Cargando…

Self-assembled micelles of novel amphiphilic copolymer cholesterol-coupled F68 containing cabazitaxel as a drug delivery system

Despite being one of the most promising amphiphilic block copolymers, use of Pluronic F68 in drug delivery is limited due to its high critical micelle concentration (CMC). In this study, we developed a novel F68 derivative, cholesterol-coupled F68 (F68-CHMC). This new derivative has a CMC of 10 μg/m...

Descripción completa

Detalles Bibliográficos
Autores principales: Song, Yanzhi, Tian, Qingjing, Huang, Zhenjun, Fan, Di, She, Zhennan, Liu, Xinrong, Cheng, Xiaobo, Yu, Bin, Deng, Yihui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4026555/
https://www.ncbi.nlm.nih.gov/pubmed/24872693
http://dx.doi.org/10.2147/IJN.S61220
_version_ 1782316853957230592
author Song, Yanzhi
Tian, Qingjing
Huang, Zhenjun
Fan, Di
She, Zhennan
Liu, Xinrong
Cheng, Xiaobo
Yu, Bin
Deng, Yihui
author_facet Song, Yanzhi
Tian, Qingjing
Huang, Zhenjun
Fan, Di
She, Zhennan
Liu, Xinrong
Cheng, Xiaobo
Yu, Bin
Deng, Yihui
author_sort Song, Yanzhi
collection PubMed
description Despite being one of the most promising amphiphilic block copolymers, use of Pluronic F68 in drug delivery is limited due to its high critical micelle concentration (CMC). In this study, we developed a novel F68 derivative, cholesterol-coupled F68 (F68-CHMC). This new derivative has a CMC of 10 μg/mL, which is 400-fold lower than that of F68. The drug-loading capacity of F68-CHMC was investigated by encapsulating cabazitaxel, a novel antitumor drug. Drug-loaded micelles were fabricated by a self-assembly method with simple dilution. The optimum particle size of the micelles was 17.5±2.1 nm, with an entrapment efficiency of 98.1% and a drug loading efficiency of 3.16%. In vitro release studies demonstrated that cabazitaxel-loaded F68-CHMC micelles had delayed and sustained-release properties. A cytotoxicity assay of S180 cells showed that blank F68-CHMC was noncytotoxic with a cell viability of nearly 100%, even at a concentration of 1,000 μg/mL. The IC(50) revealed that cabazitaxel-loaded F68-CHMC micelles were more cytotoxic than Tween 80-based cabazitaxel solution and free cabazitaxel. In vivo antitumor activity against S180 cells also indicated better tumor inhibition by the micelles (79.2%) than by Tween 80 solution (56.2%, P<0.05). Based on these results, we conclude that the F68-CHMC copolymer may be a potential nanocarrier to improve the solubility and biological activity of cabazitaxel and other hydrophobic drugs.
format Online
Article
Text
id pubmed-4026555
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Dove Medical Press
record_format MEDLINE/PubMed
spelling pubmed-40265552014-05-28 Self-assembled micelles of novel amphiphilic copolymer cholesterol-coupled F68 containing cabazitaxel as a drug delivery system Song, Yanzhi Tian, Qingjing Huang, Zhenjun Fan, Di She, Zhennan Liu, Xinrong Cheng, Xiaobo Yu, Bin Deng, Yihui Int J Nanomedicine Original Research Despite being one of the most promising amphiphilic block copolymers, use of Pluronic F68 in drug delivery is limited due to its high critical micelle concentration (CMC). In this study, we developed a novel F68 derivative, cholesterol-coupled F68 (F68-CHMC). This new derivative has a CMC of 10 μg/mL, which is 400-fold lower than that of F68. The drug-loading capacity of F68-CHMC was investigated by encapsulating cabazitaxel, a novel antitumor drug. Drug-loaded micelles were fabricated by a self-assembly method with simple dilution. The optimum particle size of the micelles was 17.5±2.1 nm, with an entrapment efficiency of 98.1% and a drug loading efficiency of 3.16%. In vitro release studies demonstrated that cabazitaxel-loaded F68-CHMC micelles had delayed and sustained-release properties. A cytotoxicity assay of S180 cells showed that blank F68-CHMC was noncytotoxic with a cell viability of nearly 100%, even at a concentration of 1,000 μg/mL. The IC(50) revealed that cabazitaxel-loaded F68-CHMC micelles were more cytotoxic than Tween 80-based cabazitaxel solution and free cabazitaxel. In vivo antitumor activity against S180 cells also indicated better tumor inhibition by the micelles (79.2%) than by Tween 80 solution (56.2%, P<0.05). Based on these results, we conclude that the F68-CHMC copolymer may be a potential nanocarrier to improve the solubility and biological activity of cabazitaxel and other hydrophobic drugs. Dove Medical Press 2014-05-12 /pmc/articles/PMC4026555/ /pubmed/24872693 http://dx.doi.org/10.2147/IJN.S61220 Text en © 2014 Song et al. This work is published by Dove Medical Press Ltd, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Ltd, provided the work is properly attributed.
spellingShingle Original Research
Song, Yanzhi
Tian, Qingjing
Huang, Zhenjun
Fan, Di
She, Zhennan
Liu, Xinrong
Cheng, Xiaobo
Yu, Bin
Deng, Yihui
Self-assembled micelles of novel amphiphilic copolymer cholesterol-coupled F68 containing cabazitaxel as a drug delivery system
title Self-assembled micelles of novel amphiphilic copolymer cholesterol-coupled F68 containing cabazitaxel as a drug delivery system
title_full Self-assembled micelles of novel amphiphilic copolymer cholesterol-coupled F68 containing cabazitaxel as a drug delivery system
title_fullStr Self-assembled micelles of novel amphiphilic copolymer cholesterol-coupled F68 containing cabazitaxel as a drug delivery system
title_full_unstemmed Self-assembled micelles of novel amphiphilic copolymer cholesterol-coupled F68 containing cabazitaxel as a drug delivery system
title_short Self-assembled micelles of novel amphiphilic copolymer cholesterol-coupled F68 containing cabazitaxel as a drug delivery system
title_sort self-assembled micelles of novel amphiphilic copolymer cholesterol-coupled f68 containing cabazitaxel as a drug delivery system
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4026555/
https://www.ncbi.nlm.nih.gov/pubmed/24872693
http://dx.doi.org/10.2147/IJN.S61220
work_keys_str_mv AT songyanzhi selfassembledmicellesofnovelamphiphiliccopolymercholesterolcoupledf68containingcabazitaxelasadrugdeliverysystem
AT tianqingjing selfassembledmicellesofnovelamphiphiliccopolymercholesterolcoupledf68containingcabazitaxelasadrugdeliverysystem
AT huangzhenjun selfassembledmicellesofnovelamphiphiliccopolymercholesterolcoupledf68containingcabazitaxelasadrugdeliverysystem
AT fandi selfassembledmicellesofnovelamphiphiliccopolymercholesterolcoupledf68containingcabazitaxelasadrugdeliverysystem
AT shezhennan selfassembledmicellesofnovelamphiphiliccopolymercholesterolcoupledf68containingcabazitaxelasadrugdeliverysystem
AT liuxinrong selfassembledmicellesofnovelamphiphiliccopolymercholesterolcoupledf68containingcabazitaxelasadrugdeliverysystem
AT chengxiaobo selfassembledmicellesofnovelamphiphiliccopolymercholesterolcoupledf68containingcabazitaxelasadrugdeliverysystem
AT yubin selfassembledmicellesofnovelamphiphiliccopolymercholesterolcoupledf68containingcabazitaxelasadrugdeliverysystem
AT dengyihui selfassembledmicellesofnovelamphiphiliccopolymercholesterolcoupledf68containingcabazitaxelasadrugdeliverysystem