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Cubosomes with surface cross-linked chitosan exhibit sustained release and bioavailability enhancement for vinpocetine

The present study aims to develop cubosomes with surface cross-linked chitosan for sustained drug delivery and enhanced oral bioavailability of vinpocetine (VPT). GMO based liquid cubosomes with VPT loading were prepared by the high pressure homogenization method. In order to enhance the anti-digest...

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Autores principales: Wei, Yuanfeng, Zhang, Jianjun, Zheng, Yazhen, Gong, Yaxiang, Fu, Meng, Liu, Chengran, Xu, Liang, Sun, Changquan Calvin, Gao, Yuan, Qian, Shuai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9060951/
https://www.ncbi.nlm.nih.gov/pubmed/35517286
http://dx.doi.org/10.1039/c8ra10302j
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author Wei, Yuanfeng
Zhang, Jianjun
Zheng, Yazhen
Gong, Yaxiang
Fu, Meng
Liu, Chengran
Xu, Liang
Sun, Changquan Calvin
Gao, Yuan
Qian, Shuai
author_facet Wei, Yuanfeng
Zhang, Jianjun
Zheng, Yazhen
Gong, Yaxiang
Fu, Meng
Liu, Chengran
Xu, Liang
Sun, Changquan Calvin
Gao, Yuan
Qian, Shuai
author_sort Wei, Yuanfeng
collection PubMed
description The present study aims to develop cubosomes with surface cross-linked chitosan for sustained drug delivery and enhanced oral bioavailability of vinpocetine (VPT). GMO based liquid cubosomes with VPT loading were prepared by the high pressure homogenization method. In order to enhance the anti-digestion effect, chitosan was cross-linked on cubosomes by the Schiff reaction, followed by solidification via spray drying. The obtained spray-dried cubosomes (chito-cubosomes) are spherical microspheres with nano-sized holes on the surface. After reconstitution, the particle size and zeta potential of chito-cubosomes were determined to be ∼250 nm and +35.9 mV, respectively. In comparison to unmodified liquid cubosomes, chito-cubosomes exhibited a significant anti-digestion effect with a typical sustained release profile. In comparison to a VPT suspension, liquid cubosomes showed a 2.5-fold higher C(max) and 3.0-fold higher AUC(0–∞), while chito-cubosomes further enhanced bioavailability (5.0-fold) with prolonged MRT (2.2-fold) and delayed T(max) (2.8-fold). The results suggested that chito-cubosomes could be a promising drug carrier for enhancing oral absorption with sustained release behavior.
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spelling pubmed-90609512022-05-04 Cubosomes with surface cross-linked chitosan exhibit sustained release and bioavailability enhancement for vinpocetine Wei, Yuanfeng Zhang, Jianjun Zheng, Yazhen Gong, Yaxiang Fu, Meng Liu, Chengran Xu, Liang Sun, Changquan Calvin Gao, Yuan Qian, Shuai RSC Adv Chemistry The present study aims to develop cubosomes with surface cross-linked chitosan for sustained drug delivery and enhanced oral bioavailability of vinpocetine (VPT). GMO based liquid cubosomes with VPT loading were prepared by the high pressure homogenization method. In order to enhance the anti-digestion effect, chitosan was cross-linked on cubosomes by the Schiff reaction, followed by solidification via spray drying. The obtained spray-dried cubosomes (chito-cubosomes) are spherical microspheres with nano-sized holes on the surface. After reconstitution, the particle size and zeta potential of chito-cubosomes were determined to be ∼250 nm and +35.9 mV, respectively. In comparison to unmodified liquid cubosomes, chito-cubosomes exhibited a significant anti-digestion effect with a typical sustained release profile. In comparison to a VPT suspension, liquid cubosomes showed a 2.5-fold higher C(max) and 3.0-fold higher AUC(0–∞), while chito-cubosomes further enhanced bioavailability (5.0-fold) with prolonged MRT (2.2-fold) and delayed T(max) (2.8-fold). The results suggested that chito-cubosomes could be a promising drug carrier for enhancing oral absorption with sustained release behavior. The Royal Society of Chemistry 2019-02-21 /pmc/articles/PMC9060951/ /pubmed/35517286 http://dx.doi.org/10.1039/c8ra10302j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Wei, Yuanfeng
Zhang, Jianjun
Zheng, Yazhen
Gong, Yaxiang
Fu, Meng
Liu, Chengran
Xu, Liang
Sun, Changquan Calvin
Gao, Yuan
Qian, Shuai
Cubosomes with surface cross-linked chitosan exhibit sustained release and bioavailability enhancement for vinpocetine
title Cubosomes with surface cross-linked chitosan exhibit sustained release and bioavailability enhancement for vinpocetine
title_full Cubosomes with surface cross-linked chitosan exhibit sustained release and bioavailability enhancement for vinpocetine
title_fullStr Cubosomes with surface cross-linked chitosan exhibit sustained release and bioavailability enhancement for vinpocetine
title_full_unstemmed Cubosomes with surface cross-linked chitosan exhibit sustained release and bioavailability enhancement for vinpocetine
title_short Cubosomes with surface cross-linked chitosan exhibit sustained release and bioavailability enhancement for vinpocetine
title_sort cubosomes with surface cross-linked chitosan exhibit sustained release and bioavailability enhancement for vinpocetine
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9060951/
https://www.ncbi.nlm.nih.gov/pubmed/35517286
http://dx.doi.org/10.1039/c8ra10302j
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