{"id":329,"date":"2014-01-01T15:34:00","date_gmt":"2014-01-01T14:34:00","guid":{"rendered":"http:\/\/ptchit.lodz.pl\/?p=329"},"modified":"2022-09-27T14:10:02","modified_gmt":"2022-09-27T12:10:02","slug":"xix-2014","status":"publish","type":"post","link":"https:\/\/ptchit.lodz.pl\/en\/2014\/01\/01\/xix-2014\/","title":{"rendered":"XIX (2014)"},"content":{"rendered":"<div data-elementor-type=\"wp-post\" data-elementor-id=\"329\" class=\"elementor elementor-329\">\n\t\t\t\t\t\t<section class=\"elementor-section elementor-top-section elementor-element elementor-element-21051333 elementor-section-boxed elementor-section-height-default elementor-section-height-default\" data-id=\"21051333\" data-element_type=\"section\" data-e-type=\"section\">\n\t\t\t\t\t\t<div class=\"elementor-container elementor-column-gap-default\">\n\t\t\t\t\t<div class=\"elementor-column elementor-col-50 elementor-top-column elementor-element elementor-element-2e05634\" data-id=\"2e05634\" data-element_type=\"column\" 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menu-item-type-post_type menu-item-object-post menu-item-194\"><a href=\"https:\/\/ptchit.lodz.pl\/en\/1997\/01\/01\/iii-1997\/\">III (1997)<\/a><\/li>\n<li id=\"menu-item-195\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-195\"><a href=\"https:\/\/ptchit.lodz.pl\/en\/1996\/01\/01\/ii-1996\/\">II (1996)<\/a><\/li>\n<li id=\"menu-item-196\" class=\"menu-item menu-item-type-post_type menu-item-object-post menu-item-196\"><a href=\"https:\/\/ptchit.lodz.pl\/en\/1995\/01\/01\/i-1995\/\">I (1995)<\/a><\/li>\n<\/ul>                <button class=\"eael-simple-menu-toggle\">\n                    <span class=\"sr-only\">Hamburger Toggle Menu<\/span>\n                    <i aria-hidden=\"true\" class=\"fas fa-bars\"><\/i>                <\/button>\n            <\/div>\n            \t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t<div class=\"elementor-column elementor-col-50 elementor-top-column elementor-element elementor-element-5bc8580e\" data-id=\"5bc8580e\" data-element_type=\"column\" data-e-type=\"column\">\n\t\t\t<div class=\"elementor-widget-wrap elementor-element-populated\">\n\t\t\t\t\t\t<div class=\"elementor-element elementor-element-f34b7b1 elementor-widget elementor-widget-text-editor\" data-id=\"f34b7b1\" data-element_type=\"widget\" data-e-type=\"widget\" data-widget_type=\"text-editor.default\">\n\t\t\t\t<div class=\"elementor-widget-container\">\n\t\t\t\t\t\t\t\t\t<p style=\"text-align: left;\"><i><img decoding=\"async\" class=\"aligncenter wp-image-2478\" src=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/09\/MNiSw-oraz-licencje-1024x111.png\" alt=\"\" width=\"462\" height=\"50\" srcset=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/09\/MNiSw-oraz-licencje-1024x111.png 1024w, https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/09\/MNiSw-oraz-licencje-300x32.png 300w, https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/09\/MNiSw-oraz-licencje-768x83.png 768w, https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/09\/MNiSw-oraz-licencje-18x2.png 18w, https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/09\/MNiSw-oraz-licencje.png 1340w\" sizes=\"(max-width: 462px) 100vw, 462px\" \/><\/i><\/p>\n<h5><b><i>Progress on Chemistry and Application of Chitin and its Derivatives (PCACD)<br>Vol. XIX (2014)<\/i><\/b><\/h5>\n<p><\/p>\n<p><\/p>\n<p><\/p>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Title_page_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download title-page<\/a><\/div>\n<p><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.11<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Pharmaceutical_assessment_of_gynaecological_powders_with_the_addition_of_hydrophilising_substances_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.10<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Influence_of_a_chosen_auxiliary_substance_on_the_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.11<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Pharmaceutical_assessment_of_gynaecological_powders_with_the_addition_of_hydrophilising_substances_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.09<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Research_of_pharmaceutical_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.10<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Influence_of_a_chosen_auxiliary_substance_on_the_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.11<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Pharmaceutical_assessment_of_gynaecological_powders_with_the_addition_of_hydrophilising_substances_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Viscometric studies of chitosan\/polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska, Alina Sionkowska, Katarzyna Krasi\u0144ska<\/span><br>DOI: 10.15259\/PCACD.19.08<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Viscometric_studies_of_chitosan_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Viscometric studies of chitosan\/polyacrylamide mixtures<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.09<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Research_of_pharmaceutical_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.10<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Influence_of_a_chosen_auxiliary_substance_on_the_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.11<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Pharmaceutical_assessment_of_gynaecological_powders_with_the_addition_of_hydrophilising_substances_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Miscibility and interactions in chitosan and polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.07<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Miscibility_and_interactions_in_chitosan_and_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Miscibility and interactions in chitosan and polyacrylamide mixtures<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Viscometric studies of chitosan\/polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska, Alina Sionkowska, Katarzyna Krasi\u0144ska<\/span><br>DOI: 10.15259\/PCACD.19.08<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Viscometric_studies_of_chitosan_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Viscometric studies of chitosan\/polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.09<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Research_of_pharmaceutical_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.10<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Influence_of_a_chosen_auxiliary_substance_on_the_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.11<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Pharmaceutical_assessment_of_gynaecological_powders_with_the_addition_of_hydrophilising_substances_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<br><span style=\"font-weight: normal;\">E. E. Kuprina, A. \u0410. Brosalina, V. S. Bobylev, A. I. Kirillov<\/span><br>DOI: 10.15259\/PCACD.19.06<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Development_of_food_improving_calcium-enriched_bioactive_agents_produced_from_chitinous_wastes_generated_in_the_process_of_aquatic_animal_processing_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Miscibility and interactions in chitosan and polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.07<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Miscibility_and_interactions_in_chitosan_and_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Miscibility and interactions in chitosan and polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Viscometric studies of chitosan\/polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska, Alina Sionkowska, Katarzyna Krasi\u0144ska<\/span><br>DOI: 10.15259\/PCACD.19.08<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Viscometric_studies_of_chitosan_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Viscometric studies of chitosan\/polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.09<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Research_of_pharmaceutical_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.10<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Influence_of_a_chosen_auxiliary_substance_on_the_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.11<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Pharmaceutical_assessment_of_gynaecological_powders_with_the_addition_of_hydrophilising_substances_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of cross-linked chitosan for nitrate nitrogen (V) removal from aqueous solutions<br><span style=\"font-weight: normal;\">Tomasz J\u00f3\u017awiak, Urszula Filipkowska, Paula Szymczyk, Artur Mielcarek<\/span><br>DOI: 10.15259\/PCACD.19.05<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_cross-linked_chitosan_for_nitrate_nitrogen_V_removal_from_aqueous_solutions_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of cross-linked chitosan for nitrate nitrogen (V) removal from aqueous solutions<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<br><span style=\"font-weight: normal;\">E. E. Kuprina, A. \u0410. Brosalina, V. S. Bobylev, A. I. Kirillov<\/span><br>DOI: 10.15259\/PCACD.19.06<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Development_of_food_improving_calcium-enriched_bioactive_agents_produced_from_chitinous_wastes_generated_in_the_process_of_aquatic_animal_processing_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Miscibility and interactions in chitosan and polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.07<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Miscibility_and_interactions_in_chitosan_and_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Miscibility and interactions in chitosan and polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Viscometric studies of chitosan\/polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska, Alina Sionkowska, Katarzyna Krasi\u0144ska<\/span><br>DOI: 10.15259\/PCACD.19.08<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Viscometric_studies_of_chitosan_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Viscometric studies of chitosan\/polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.09<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Research_of_pharmaceutical_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.10<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Influence_of_a_chosen_auxiliary_substance_on_the_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.11<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Pharmaceutical_assessment_of_gynaecological_powders_with_the_addition_of_hydrophilising_substances_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Inhibition of Ehrlich Ascites Tumour (EAT) cells proliferation through chitosan-mediated regulation of activity of the Akt pathway<br><span style=\"font-weight: normal;\">Jan Ignacak, Maria Wi\u015bniewska-Wrona, Joanna Duli\u0144ska-Litewka, Iwona Pa\u0142ka, Magdalena Kucharska<\/span><br>DOI: 10.15259\/PCACD.19.04<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Inhibition_of_Ehrlich_Ascites_Tumour_EAT_cells_proliferation_through_chitosan-mediated_regulation_of_activity_of_the_Akt_pathway_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Inhibition of Ehrlich Ascites Tumour (EAT) cells proliferation through chitosan-mediated regulation of activity of the Akt pathway<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Application of cross-linked chitosan for nitrate nitrogen (V) removal from aqueous solutions<br><span style=\"font-weight: normal;\">Tomasz J\u00f3\u017awiak, Urszula Filipkowska, Paula Szymczyk, Artur Mielcarek<\/span><br>DOI: 10.15259\/PCACD.19.05<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_cross-linked_chitosan_for_nitrate_nitrogen_V_removal_from_aqueous_solutions_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of cross-linked chitosan for nitrate nitrogen (V) removal from aqueous solutions<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<br><span style=\"font-weight: normal;\">E. E. Kuprina, A. \u0410. Brosalina, V. S. Bobylev, A. I. Kirillov<\/span><br>DOI: 10.15259\/PCACD.19.06<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Development_of_food_improving_calcium-enriched_bioactive_agents_produced_from_chitinous_wastes_generated_in_the_process_of_aquatic_animal_processing_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Miscibility and interactions in chitosan and polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.07<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Miscibility_and_interactions_in_chitosan_and_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Miscibility and interactions in chitosan and polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Viscometric studies of chitosan\/polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska, Alina Sionkowska, Katarzyna Krasi\u0144ska<\/span><br>DOI: 10.15259\/PCACD.19.08<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Viscometric_studies_of_chitosan_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Viscometric studies of chitosan\/polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.09<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Research_of_pharmaceutical_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.10<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Influence_of_a_chosen_auxiliary_substance_on_the_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.11<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Pharmaceutical_assessment_of_gynaecological_powders_with_the_addition_of_hydrophilising_substances_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation and dissolution properties of ketoprofen in binary solid dispersion with chitosan<br><span style=\"font-weight: normal;\">Bo\u017cena Grimling, Agata G\u00f3rniak, Jan Meler, Maria Szcze\u015bniak, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.03<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_and_dissolution_properties_of_ketoprofen_in_binary_solid_dispersion_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation and dissolution properties of ketoprofen in binary solid dispersion with chitosan<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Inhibition of Ehrlich Ascites Tumour (EAT) cells proliferation through chitosan-mediated regulation of activity of the Akt pathway<br><span style=\"font-weight: normal;\">Jan Ignacak, Maria Wi\u015bniewska-Wrona, Joanna Duli\u0144ska-Litewka, Iwona Pa\u0142ka, Magdalena Kucharska<\/span><br>DOI: 10.15259\/PCACD.19.04<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Inhibition_of_Ehrlich_Ascites_Tumour_EAT_cells_proliferation_through_chitosan-mediated_regulation_of_activity_of_the_Akt_pathway_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Inhibition of Ehrlich Ascites Tumour (EAT) cells proliferation through chitosan-mediated regulation of activity of the Akt pathway<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of cross-linked chitosan for nitrate nitrogen (V) removal from aqueous solutions<br><span style=\"font-weight: normal;\">Tomasz J\u00f3\u017awiak, Urszula Filipkowska, Paula Szymczyk, Artur Mielcarek<\/span><br>DOI: 10.15259\/PCACD.19.05<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_cross-linked_chitosan_for_nitrate_nitrogen_V_removal_from_aqueous_solutions_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of cross-linked chitosan for nitrate nitrogen (V) removal from aqueous solutions<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<br><span style=\"font-weight: normal;\">E. E. Kuprina, A. \u0410. Brosalina, V. S. Bobylev, A. I. Kirillov<\/span><br>DOI: 10.15259\/PCACD.19.06<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Development_of_food_improving_calcium-enriched_bioactive_agents_produced_from_chitinous_wastes_generated_in_the_process_of_aquatic_animal_processing_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Miscibility and interactions in chitosan and polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.07<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Miscibility_and_interactions_in_chitosan_and_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Miscibility and interactions in chitosan and polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Viscometric studies of chitosan\/polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska, Alina Sionkowska, Katarzyna Krasi\u0144ska<\/span><br>DOI: 10.15259\/PCACD.19.08<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Viscometric_studies_of_chitosan_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Viscometric studies of chitosan\/polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.09<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Research_of_pharmaceutical_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.10<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Influence_of_a_chosen_auxiliary_substance_on_the_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.11<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Pharmaceutical_assessment_of_gynaecological_powders_with_the_addition_of_hydrophilising_substances_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of cross-linked chitosan for phosphate removal from aqueous solutions<br><span style=\"font-weight: normal;\">Urszula Filipkowska, Tomasz J\u00f3\u017awiak, Paula Szymczyk<\/span><br>DOI: 10.15259\/PCACD.19.01<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_cross-linked_chitosan_for_phosphate_removal_from_aqueous_solutions_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of cross-linked chitosan for phosphate removal from aqueous solutions<\/a><\/div>\n<h6>&nbsp;<\/h6>\n<h6>Technology of preparation and evaluation of ketoprofen-chitosan solid dispersion<br><span style=\"font-weight: normal;\">Bo\u017cena Grimling, Maria Szcze\u015bniak, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.02<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Technology_of_preparation_and_evaluation_of_ketoprofen-chitosan_solid_dispersion_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Technology of preparation and evaluation of ketoprofen-chitosan solid dispersion<\/a><\/div>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Characterisation and dissolution properties of ketoprofen in binary solid dispersion with chitosan<br><span style=\"font-weight: normal;\">Bo\u017cena Grimling, Agata G\u00f3rniak, Jan Meler, Maria Szcze\u015bniak, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.03<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_and_dissolution_properties_of_ketoprofen_in_binary_solid_dispersion_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation and dissolution properties of ketoprofen in binary solid dispersion with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Inhibition of Ehrlich Ascites Tumour (EAT) cells proliferation through chitosan-mediated regulation of activity of the Akt pathway<br><span style=\"font-weight: normal;\">Jan Ignacak, Maria Wi\u015bniewska-Wrona, Joanna Duli\u0144ska-Litewka, Iwona Pa\u0142ka, Magdalena Kucharska<\/span><br>DOI: 10.15259\/PCACD.19.04<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Inhibition_of_Ehrlich_Ascites_Tumour_EAT_cells_proliferation_through_chitosan-mediated_regulation_of_activity_of_the_Akt_pathway_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Inhibition of Ehrlich Ascites Tumour (EAT) cells proliferation through chitosan-mediated regulation of activity of the Akt pathway<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of cross-linked chitosan for nitrate nitrogen (V) removal from aqueous solutions<br><span style=\"font-weight: normal;\">Tomasz J\u00f3\u017awiak, Urszula Filipkowska, Paula Szymczyk, Artur Mielcarek<\/span><br>DOI: 10.15259\/PCACD.19.05<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_cross-linked_chitosan_for_nitrate_nitrogen_V_removal_from_aqueous_solutions_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of cross-linked chitosan for nitrate nitrogen (V) removal from aqueous solutions<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<br><span style=\"font-weight: normal;\">E. E. Kuprina, A. \u0410. Brosalina, V. S. Bobylev, A. I. Kirillov<\/span><br>DOI: 10.15259\/PCACD.19.06<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Development_of_food_improving_calcium-enriched_bioactive_agents_produced_from_chitinous_wastes_generated_in_the_process_of_aquatic_animal_processing_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Miscibility and interactions in chitosan and polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.07<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Miscibility_and_interactions_in_chitosan_and_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Miscibility and interactions in chitosan and polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Viscometric studies of chitosan\/polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska, Alina Sionkowska, Katarzyna Krasi\u0144ska<\/span><br>DOI: 10.15259\/PCACD.19.08<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Viscometric_studies_of_chitosan_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Viscometric studies of chitosan\/polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.09<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Research_of_pharmaceutical_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.10<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Influence_of_a_chosen_auxiliary_substance_on_the_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.11<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Pharmaceutical_assessment_of_gynaecological_powders_with_the_addition_of_hydrophilising_substances_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t<\/p>\n<p><\/p>\n<h6 class=\"wp-block-heading\">&nbsp;<\/h6>\n<h6>Application of cross-linked chitosan for phosphate removal from aqueous solutions<br><span style=\"font-weight: normal;\">Urszula Filipkowska, Tomasz J\u00f3\u017awiak, Paula Szymczyk<\/span><br>DOI: 10.15259\/PCACD.19.01<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_cross-linked_chitosan_for_phosphate_removal_from_aqueous_solutions_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of cross-linked chitosan for phosphate removal from aqueous solutions<\/a><\/div>\n<h6>&nbsp;<\/h6>\n<h6>Technology of preparation and evaluation of ketoprofen-chitosan solid dispersion<br><span style=\"font-weight: normal;\">Bo\u017cena Grimling, Maria Szcze\u015bniak, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.02<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Technology_of_preparation_and_evaluation_of_ketoprofen-chitosan_solid_dispersion_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Technology of preparation and evaluation of ketoprofen-chitosan solid dispersion<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation and dissolution properties of ketoprofen in binary solid dispersion with chitosan<br><span style=\"font-weight: normal;\">Bo\u017cena Grimling, Agata G\u00f3rniak, Jan Meler, Maria Szcze\u015bniak, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.03<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_and_dissolution_properties_of_ketoprofen_in_binary_solid_dispersion_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation and dissolution properties of ketoprofen in binary solid dispersion with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Inhibition of Ehrlich Ascites Tumour (EAT) cells proliferation through chitosan-mediated regulation of activity of the Akt pathway<br><span style=\"font-weight: normal;\">Jan Ignacak, Maria Wi\u015bniewska-Wrona, Joanna Duli\u0144ska-Litewka, Iwona Pa\u0142ka, Magdalena Kucharska<\/span><br>DOI: 10.15259\/PCACD.19.04<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Inhibition_of_Ehrlich_Ascites_Tumour_EAT_cells_proliferation_through_chitosan-mediated_regulation_of_activity_of_the_Akt_pathway_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Inhibition of Ehrlich Ascites Tumour (EAT) cells proliferation through chitosan-mediated regulation of activity of the Akt pathway<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of cross-linked chitosan for nitrate nitrogen (V) removal from aqueous solutions<br><span style=\"font-weight: normal;\">Tomasz J\u00f3\u017awiak, Urszula Filipkowska, Paula Szymczyk, Artur Mielcarek<\/span><br>DOI: 10.15259\/PCACD.19.05<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_cross-linked_chitosan_for_nitrate_nitrogen_V_removal_from_aqueous_solutions_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of cross-linked chitosan for nitrate nitrogen (V) removal from aqueous solutions<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<br><span style=\"font-weight: normal;\">E. E. Kuprina, A. \u0410. Brosalina, V. S. Bobylev, A. I. Kirillov<\/span><br>DOI: 10.15259\/PCACD.19.06<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Development_of_food_improving_calcium-enriched_bioactive_agents_produced_from_chitinous_wastes_generated_in_the_process_of_aquatic_animal_processing_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Development of food improving calcium-enriched bioactive agents produced from chitinous wastes generated in the process of aquatic animal processing<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Miscibility and interactions in chitosan and polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.07<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Miscibility_and_interactions_in_chitosan_and_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Miscibility and interactions in chitosan and polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Viscometric studies of chitosan\/polyacrylamide mixtures<br><span style=\"font-weight: normal;\">Katarzyna Lewandowska, Alina Sionkowska, Katarzyna Krasi\u0144ska<\/span><br>DOI: 10.15259\/PCACD.19.08<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Viscometric_studies_of_chitosan_polyacrylamide_mixtures_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Viscometric studies of chitosan\/polyacrylamide mixtures<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.09<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Research_of_pharmaceutical_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Research of pharmaceutical properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.10<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Influence_of_a_chosen_auxiliary_substance_on_the_properties_of_hydrophilic_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Influence of a chosen auxiliary substance on the properties of hydrophilic powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.11<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Pharmaceutical_assessment_of_gynaecological_powders_with_the_addition_of_hydrophilising_substances_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Pharmaceutical assessment of gynaecological powders with the addition of hydrophilising substances containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<br><span style=\"font-weight: normal;\">Katarzyna Ma\u0142olepsza-Jarmo\u0142owska<\/span><br>DOI: 10.15259\/PCACD.19.12<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Use_polyvinylpyrrolidone_in_technology_of_gynaecological_powders_containing_lactic_acid_complexed_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Use polyvinylpyrrolidone in technology of gynaecological powders containing lactic acid complexed with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Adsorption studies of ketoconazole with chitosan<br><span style=\"font-weight: normal;\">Jan Meler, Maria Szcze\u015bniak, Janusz Pluta, Bo\u017cena Grimling<\/span><br>DOI: 10.15259\/PCACD.19.13<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Adsorption_studies_of_ketoconazole_with_chitosan_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Adsorption studies of ketoconazole with chitosan<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<br><span style=\"font-weight: normal;\">Jan Meler, Bo\u017cena Grimling, Maria Szcze\u015bniak, Pawe\u0142 Biernat, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.14<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/In_vitro_studies_of_adsorption_of_Erythromycin_on_chitosans_from_dietary_supplements_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: In vitro studies of adsorption of Erythromycin on chitosans from dietary supplements<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Mechanism of formation of thermosensitive chitosan chloride gels<br><span style=\"font-weight: normal;\">Zofia Modrzejewska, Agata Skwarczy\u0144ska, Waldemar Maniukiewicz, Timothy E. L. Douglas<\/span><br>DOI: 10.15259\/PCACD.19.15<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Mechanism_of_formation__of_thermosensitive_chitosan_chloride_gels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Mechanism of formation of thermosensitive chitosan chloride gels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Characterisation of chitosan after cross-linking by tannic acid<br><span style=\"font-weight: normal;\">Alina Sionkowska, Beata Kaczmarek, Katarzyna Lewandowska<\/span><br>DOI: 10.15259\/PCACD.19.16<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Characterisation_of_chitosan_after_cross-linking_by_tannic_acid_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Characterisation of chitosan after cross-linking by tannic acid<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Application of chitosan in the formulation of methyl cellulose-based hydrogels<br><span style=\"font-weight: normal;\">Maria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz Pluta<\/span><br>DOI: 10.15259\/PCACD.19.17<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Application_of_chitosan_in_the_formulation_of_methyl_cellulose-based_hydrogels_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Application of chitosan in the formulation of methyl cellulose-based hydrogels<\/a><\/div>\n<p><!-- wp:heading --><\/p>\n<h6>&nbsp;<\/h6>\n<h6>Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<br><span style=\"font-weight: normal;\">Anastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. Svirshchevskaya<\/span><br>DOI: 10.15259\/PCACD.19.18<\/h6>\n<div class=\"wp-block-file\"><a class=\"wp-block-file__button\" href=\"https:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/03\/Biodistribution_of_DOXORUBICIN-LOADED_SUCCINOYL_chitosan_nanoparticles_in_mice_injected_VIA_intravenous_or_intranasal_routes_PTChit_XIX_2014.pdf\" download=\"\" aria-describedby=\"wp-block-file--media-8154b89f-a777-4fd5-ac34-45548e8745f8\">Download: Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routes<\/a><\/div>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t\t\t<\/div>","protected":false},"excerpt":{"rendered":"<p>&nbsp; Application of chitosan in the formulation of methyl cellulose-based hydrogelsMaria Szcze\u015bniak, Bo\u017cena Grimling, Jan Meler, Janusz PlutaDOI: 10.15259\/PCACD.19.17 Pobierz: Application of chitosan in the formulation of methyl cellulose-based hydrogels &nbsp; Biodistribution of DOXORUBICIN-LOADED SUCCINOYL chitosan nanoparticles in mice injected VIA intravenous or intranasal routesAnastasia \u0410. Zubareva, Tatyana S. Shcherbinina, Valery P. Varlamov, \u0415lena V. [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[1],"tags":[],"class_list":["post-329","post","type-post","status-publish","format-standard","hentry","category-czasopismo-pcacd"],"blocksy_meta":{"styles_descriptor":{"styles":{"desktop":"","tablet":"","mobile":""},"google_fonts":[],"version":6}},"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.2 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>XIX (2014) - PTCHIT<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/ptchit.lodz.pl\/en\/2014\/01\/01\/xix-2014\/\" \/>\n<meta name=\"twitter:label1\" content=\"Written by\" \/>\n\t<meta name=\"twitter:data1\" content=\"administrator\" \/>\n\t<meta name=\"twitter:label2\" content=\"Est. reading time\" \/>\n\t<meta name=\"twitter:data2\" content=\"5 minutes\" \/>\n<script type=\"application\/ld+json\" class=\"yoast-schema-graph\">{\"@context\":\"https:\/\/schema.org\",\"@graph\":[{\"@type\":\"Article\",\"@id\":\"https:\/\/ptchit.lodz.pl\/2014\/01\/01\/xix-2014\/#article\",\"isPartOf\":{\"@id\":\"https:\/\/ptchit.lodz.pl\/2014\/01\/01\/xix-2014\/\"},\"author\":{\"name\":\"administrator\",\"@id\":\"https:\/\/ptchit.lodz.pl\/#\/schema\/person\/10fca8418ec70ba63ef3ae392a9f2fd4\"},\"headline\":\"XIX (2014)\",\"datePublished\":\"2014-01-01T14:34:00+00:00\",\"dateModified\":\"2022-09-27T12:10:02+00:00\",\"mainEntityOfPage\":{\"@id\":\"https:\/\/ptchit.lodz.pl\/2014\/01\/01\/xix-2014\/\"},\"wordCount\":665,\"publisher\":{\"@id\":\"https:\/\/ptchit.lodz.pl\/#organization\"},\"image\":{\"@id\":\"https:\/\/ptchit.lodz.pl\/2014\/01\/01\/xix-2014\/#primaryimage\"},\"thumbnailUrl\":\"http:\/\/ptchit.lodz.pl\/wp-content\/uploads\/2022\/09\/MNiSw-oraz-licencje-1024x111.png\",\"articleSection\":[\"Czasopismo PCACD\"],\"inLanguage\":\"en-US\"},{\"@type\":\"WebPage\",\"@id\":\"https:\/\/ptchit.lodz.pl\/2014\/01\/01\/xix-2014\/\",\"url\":\"https:\/\/ptchit.lodz.pl\/2014\/01\/01\/xix-2014\/\",\"name\":\"XIX (2014) - 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