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Preparation and evaluation of polymeric microparticulates for improving cellular uptake of gemcitabine
BACKGROUND: Gemcitabine must be administered at high doses to elicit the required therapeutic response because of its very short plasma half-life due to rapid metabolism. These high doses can have severe adverse effects. METHODS: In this study, polymeric microparticulate systems of gemcitabine were...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Dove Medical Press
2012
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3357977/ https://www.ncbi.nlm.nih.gov/pubmed/22661887 http://dx.doi.org/10.2147/IJN.S30465 |
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author | Lim, Ji-Ho You, Sung-Kyun Baek, Jong-Suep Hwang, Chan-Ju Na, Young-Guk Shin, Sang-Chul Cho, Cheong-Weon |
author_facet | Lim, Ji-Ho You, Sung-Kyun Baek, Jong-Suep Hwang, Chan-Ju Na, Young-Guk Shin, Sang-Chul Cho, Cheong-Weon |
author_sort | Lim, Ji-Ho |
collection | PubMed |
description | BACKGROUND: Gemcitabine must be administered at high doses to elicit the required therapeutic response because of its very short plasma half-life due to rapid metabolism. These high doses can have severe adverse effects. METHODS: In this study, polymeric microparticulate systems of gemcitabine were prepared using chitosan as a mucoadhesive polymer and Eudragit L100-55 as an enteric copolymer. The physicochemical and biopharmaceutical properties of the resulting systems were then evaluated. RESULTS: There was no endothermic peak for gemcitabine in any of the polymeric gemcitabine microparticulate systems, suggesting that gemcitabine was bound to chitosan and Eudragit L100-55 and its crystallinity was changed into an amorphous form. The polymeric gemcitabine microparticulate system showed more than 80% release of gemcitabine in 30 minutes in simulated intestinal fluid. When mucin particles were incubated with gemcitabine polymeric microparticulates, the zeta potential of the mucin particles was increased to 1.57 mV, indicating that the polymeric gemcitabine microparticulates were attached to the mucin particles. Furthermore, the F53 polymeric gemcitabine microparticulates having 150 mg of chitosan showed a 3.8-fold increased uptake of gemcitabine into Caco-2 cells over 72 hours compared with gemcitabine solution alone. CONCLUSION: Overall, these results suggest that polymeric gemcitabine microparticulate systems could be used as carriers to help oral absorption of gemcitabine. |
format | Online Article Text |
id | pubmed-3357977 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
publisher | Dove Medical Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-33579772012-06-01 Preparation and evaluation of polymeric microparticulates for improving cellular uptake of gemcitabine Lim, Ji-Ho You, Sung-Kyun Baek, Jong-Suep Hwang, Chan-Ju Na, Young-Guk Shin, Sang-Chul Cho, Cheong-Weon Int J Nanomedicine Original Research BACKGROUND: Gemcitabine must be administered at high doses to elicit the required therapeutic response because of its very short plasma half-life due to rapid metabolism. These high doses can have severe adverse effects. METHODS: In this study, polymeric microparticulate systems of gemcitabine were prepared using chitosan as a mucoadhesive polymer and Eudragit L100-55 as an enteric copolymer. The physicochemical and biopharmaceutical properties of the resulting systems were then evaluated. RESULTS: There was no endothermic peak for gemcitabine in any of the polymeric gemcitabine microparticulate systems, suggesting that gemcitabine was bound to chitosan and Eudragit L100-55 and its crystallinity was changed into an amorphous form. The polymeric gemcitabine microparticulate system showed more than 80% release of gemcitabine in 30 minutes in simulated intestinal fluid. When mucin particles were incubated with gemcitabine polymeric microparticulates, the zeta potential of the mucin particles was increased to 1.57 mV, indicating that the polymeric gemcitabine microparticulates were attached to the mucin particles. Furthermore, the F53 polymeric gemcitabine microparticulates having 150 mg of chitosan showed a 3.8-fold increased uptake of gemcitabine into Caco-2 cells over 72 hours compared with gemcitabine solution alone. CONCLUSION: Overall, these results suggest that polymeric gemcitabine microparticulate systems could be used as carriers to help oral absorption of gemcitabine. Dove Medical Press 2012 2012-05-07 /pmc/articles/PMC3357977/ /pubmed/22661887 http://dx.doi.org/10.2147/IJN.S30465 Text en © 2012 Lim et al, publisher and licensee Dove Medical Press Ltd. This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited. |
spellingShingle | Original Research Lim, Ji-Ho You, Sung-Kyun Baek, Jong-Suep Hwang, Chan-Ju Na, Young-Guk Shin, Sang-Chul Cho, Cheong-Weon Preparation and evaluation of polymeric microparticulates for improving cellular uptake of gemcitabine |
title | Preparation and evaluation of polymeric microparticulates for improving cellular uptake of gemcitabine |
title_full | Preparation and evaluation of polymeric microparticulates for improving cellular uptake of gemcitabine |
title_fullStr | Preparation and evaluation of polymeric microparticulates for improving cellular uptake of gemcitabine |
title_full_unstemmed | Preparation and evaluation of polymeric microparticulates for improving cellular uptake of gemcitabine |
title_short | Preparation and evaluation of polymeric microparticulates for improving cellular uptake of gemcitabine |
title_sort | preparation and evaluation of polymeric microparticulates for improving cellular uptake of gemcitabine |
topic | Original Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3357977/ https://www.ncbi.nlm.nih.gov/pubmed/22661887 http://dx.doi.org/10.2147/IJN.S30465 |
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