Efficient Peroral Delivery of Insulin via Vitamin B12 Modified Trimethyl Chitosan Nanoparticles

PURPOSE: We investigated the effect of vitamin B12 (VB12) modification on the insulin absorption from trimethyl chitosan(TMC) nanoparticles (NPs) under the influence of mucus. METHODS: TMC and TMC-VB12 were synthesized and insulin loaded TMC/TMC-VB12 nanoparticles were prepared and characterized. Mo...

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Main Authors: Zhiyang Ke, Han Guo, Xi Zhu, Yun Jin, Yuan Huang
Format: Article
Language:English
Published: Canadian Society for Pharmaceutical Sciences 2015-05-01
Series:Journal of Pharmacy & Pharmaceutical Sciences
Online Access:https://journals.library.ualberta.ca/jpps/index.php/JPPS/article/view/23425
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spelling doaj-7a1bed613e3c407c8a02246abe8a4dcf2020-11-25T04:07:26ZengCanadian Society for Pharmaceutical SciencesJournal of Pharmacy & Pharmaceutical Sciences1482-18262015-05-0118210.18433/J3J88QEfficient Peroral Delivery of Insulin via Vitamin B12 Modified Trimethyl Chitosan NanoparticlesZhiyang Ke0Han Guo1Xi Zhu2Yun Jin3Yuan Huang4Key Laboratory of Drug Targeting and Drug Delivery, Ministry of Education, Sichuan University, Chengdu, P.C. ChinaKey Laboratory of Drug Targeting and Drug Delivery, Ministry of Education, Sichuan University, Chengdu, P.C. ChinaKey Laboratory of Drug Targeting and Drug Delivery, Ministry of Education, Sichuan University, Chengdu, P.C. ChinaKey Laboratory of Drug Targeting and Drug Delivery, Ministry of Education, Sichuan University, Chengdu, P.C. ChinaKey Laboratory of Drug Targeting and Drug Delivery, Ministry of Education, Sichuan University, Chengdu, P.C. China PURPOSE: We investigated the effect of vitamin B12 (VB12) modification on the insulin absorption from trimethyl chitosan(TMC) nanoparticles (NPs) under the influence of mucus. METHODS: TMC and TMC-VB12 were synthesized and insulin loaded TMC/TMC-VB12 nanoparticles were prepared and characterized. Modified and unmodified nanoparticles were studied with Caco-2/HT29-MTX cell model and ligated rat ileum loop. RESULTS: Compared with unmodified NPs, VB12 modified NPs showed significantly higher drug internalization in Caco-2/HT29-MTX cell model. The internalization mechanism via VB12 mediation included caveolae and clathrin-mediated endocytosis pathway. Meanwhile, an increased transportation of drugs was observed for VB12 modified NPs, possibly due to the ligand-receptor interaction via an intrinsic factor-dependent fashion. Although the uptake and transport of VB12 modified NPs could be partially influenced by mucus, they still showed higher drug permeation through Caco-2/HT29-MTX co-cultured cells than unmodified NPs in the presence or absence of mucus. Moreover, in situ study in ligated rat ileum loop demonstrated that VB12 modified nanoparticles could reduce the residual insulin in intestinal lumen (0.59 times) and increase their absorption in epithelial tissue (4.8 times) compared with the unmodified ones. CONCLUSION: VB12 modified trimethyl chitosan nanoparticle is a promising carrier for peroral delivery of insulin.   This article is open to POST-PUBLICATION REVIEW. Registered readers (see “For Readers”) may comment by clicking on ABSTRACT on the issue’s contents page. https://journals.library.ualberta.ca/jpps/index.php/JPPS/article/view/23425
collection DOAJ
language English
format Article
sources DOAJ
author Zhiyang Ke
Han Guo
Xi Zhu
Yun Jin
Yuan Huang
spellingShingle Zhiyang Ke
Han Guo
Xi Zhu
Yun Jin
Yuan Huang
Efficient Peroral Delivery of Insulin via Vitamin B12 Modified Trimethyl Chitosan Nanoparticles
Journal of Pharmacy & Pharmaceutical Sciences
author_facet Zhiyang Ke
Han Guo
Xi Zhu
Yun Jin
Yuan Huang
author_sort Zhiyang Ke
title Efficient Peroral Delivery of Insulin via Vitamin B12 Modified Trimethyl Chitosan Nanoparticles
title_short Efficient Peroral Delivery of Insulin via Vitamin B12 Modified Trimethyl Chitosan Nanoparticles
title_full Efficient Peroral Delivery of Insulin via Vitamin B12 Modified Trimethyl Chitosan Nanoparticles
title_fullStr Efficient Peroral Delivery of Insulin via Vitamin B12 Modified Trimethyl Chitosan Nanoparticles
title_full_unstemmed Efficient Peroral Delivery of Insulin via Vitamin B12 Modified Trimethyl Chitosan Nanoparticles
title_sort efficient peroral delivery of insulin via vitamin b12 modified trimethyl chitosan nanoparticles
publisher Canadian Society for Pharmaceutical Sciences
series Journal of Pharmacy & Pharmaceutical Sciences
issn 1482-1826
publishDate 2015-05-01
description PURPOSE: We investigated the effect of vitamin B12 (VB12) modification on the insulin absorption from trimethyl chitosan(TMC) nanoparticles (NPs) under the influence of mucus. METHODS: TMC and TMC-VB12 were synthesized and insulin loaded TMC/TMC-VB12 nanoparticles were prepared and characterized. Modified and unmodified nanoparticles were studied with Caco-2/HT29-MTX cell model and ligated rat ileum loop. RESULTS: Compared with unmodified NPs, VB12 modified NPs showed significantly higher drug internalization in Caco-2/HT29-MTX cell model. The internalization mechanism via VB12 mediation included caveolae and clathrin-mediated endocytosis pathway. Meanwhile, an increased transportation of drugs was observed for VB12 modified NPs, possibly due to the ligand-receptor interaction via an intrinsic factor-dependent fashion. Although the uptake and transport of VB12 modified NPs could be partially influenced by mucus, they still showed higher drug permeation through Caco-2/HT29-MTX co-cultured cells than unmodified NPs in the presence or absence of mucus. Moreover, in situ study in ligated rat ileum loop demonstrated that VB12 modified nanoparticles could reduce the residual insulin in intestinal lumen (0.59 times) and increase their absorption in epithelial tissue (4.8 times) compared with the unmodified ones. CONCLUSION: VB12 modified trimethyl chitosan nanoparticle is a promising carrier for peroral delivery of insulin.   This article is open to POST-PUBLICATION REVIEW. Registered readers (see “For Readers”) may comment by clicking on ABSTRACT on the issue’s contents page.
url https://journals.library.ualberta.ca/jpps/index.php/JPPS/article/view/23425
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