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Pluronic mixed micelles overcoming methotrexate multidrug resistance: in vitro and in vivo evaluation

A Pluronic polymeric mixed micelle delivery system was developed in this study by using Pluronic P105 and F127 block copolymers to encapsulate the antitumor compound, methotrexate (MTX). The MTX-loaded Pluronic P105/F127 mixed micelle exhibited the spherical shape with about 22 nm in diameter, high...

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Detalles Bibliográficos
Autores principales: Chen, Yanzuo, Sha, Xianyi, Zhang, Wei, Zhong, Weitong, Fan, Zhuoyang, Ren, Qiuyue, Chen, Liangcen, Fang, Xiaoling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3630990/
https://www.ncbi.nlm.nih.gov/pubmed/23620663
http://dx.doi.org/10.2147/IJN.S42368
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author Chen, Yanzuo
Sha, Xianyi
Zhang, Wei
Zhong, Weitong
Fan, Zhuoyang
Ren, Qiuyue
Chen, Liangcen
Fang, Xiaoling
author_facet Chen, Yanzuo
Sha, Xianyi
Zhang, Wei
Zhong, Weitong
Fan, Zhuoyang
Ren, Qiuyue
Chen, Liangcen
Fang, Xiaoling
author_sort Chen, Yanzuo
collection PubMed
description A Pluronic polymeric mixed micelle delivery system was developed in this study by using Pluronic P105 and F127 block copolymers to encapsulate the antitumor compound, methotrexate (MTX). The MTX-loaded Pluronic P105/F127 mixed micelle exhibited the spherical shape with about 22 nm in diameter, high encapsulation efficiency (about 85%) and pH-dependent in vitro drug release. In this study, A-549 and KBv cell lines were selected as multidrug resistance tumor cell models, while H-460 and KB cell lines were chosen as sensitive tumor cells. The MTX-loaded Pluronic P105/F127 mixed micelle exhibited significant higher in vitro cytotoxicity in multidrug resistant tumor cells than that of control (MTX injection) mainly because of higher cellular uptake of MTX. The pharmacokinetic studies indicated that the Pluronic micelles significantly prolonged systemic circulation time of MTX compared to MTX injection. Moreover, a much stronger antitumor efficacy in KBv tumor xenografts nude mice was observed in the MTX-loaded Pluronic P105/F127 mixed micelle group, than MTX. Collectively, Pluronic P105/F127 mixed micelles could significantly enhance the antitumor activity of MTX and might be a promising drug delivery platform for multidrug resistance modulation.
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spelling pubmed-36309902013-04-25 Pluronic mixed micelles overcoming methotrexate multidrug resistance: in vitro and in vivo evaluation Chen, Yanzuo Sha, Xianyi Zhang, Wei Zhong, Weitong Fan, Zhuoyang Ren, Qiuyue Chen, Liangcen Fang, Xiaoling Int J Nanomedicine Original Research A Pluronic polymeric mixed micelle delivery system was developed in this study by using Pluronic P105 and F127 block copolymers to encapsulate the antitumor compound, methotrexate (MTX). The MTX-loaded Pluronic P105/F127 mixed micelle exhibited the spherical shape with about 22 nm in diameter, high encapsulation efficiency (about 85%) and pH-dependent in vitro drug release. In this study, A-549 and KBv cell lines were selected as multidrug resistance tumor cell models, while H-460 and KB cell lines were chosen as sensitive tumor cells. The MTX-loaded Pluronic P105/F127 mixed micelle exhibited significant higher in vitro cytotoxicity in multidrug resistant tumor cells than that of control (MTX injection) mainly because of higher cellular uptake of MTX. The pharmacokinetic studies indicated that the Pluronic micelles significantly prolonged systemic circulation time of MTX compared to MTX injection. Moreover, a much stronger antitumor efficacy in KBv tumor xenografts nude mice was observed in the MTX-loaded Pluronic P105/F127 mixed micelle group, than MTX. Collectively, Pluronic P105/F127 mixed micelles could significantly enhance the antitumor activity of MTX and might be a promising drug delivery platform for multidrug resistance modulation. Dove Medical Press 2013 2013-04-16 /pmc/articles/PMC3630990/ /pubmed/23620663 http://dx.doi.org/10.2147/IJN.S42368 Text en © 2013 Chen 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
Chen, Yanzuo
Sha, Xianyi
Zhang, Wei
Zhong, Weitong
Fan, Zhuoyang
Ren, Qiuyue
Chen, Liangcen
Fang, Xiaoling
Pluronic mixed micelles overcoming methotrexate multidrug resistance: in vitro and in vivo evaluation
title Pluronic mixed micelles overcoming methotrexate multidrug resistance: in vitro and in vivo evaluation
title_full Pluronic mixed micelles overcoming methotrexate multidrug resistance: in vitro and in vivo evaluation
title_fullStr Pluronic mixed micelles overcoming methotrexate multidrug resistance: in vitro and in vivo evaluation
title_full_unstemmed Pluronic mixed micelles overcoming methotrexate multidrug resistance: in vitro and in vivo evaluation
title_short Pluronic mixed micelles overcoming methotrexate multidrug resistance: in vitro and in vivo evaluation
title_sort pluronic mixed micelles overcoming methotrexate multidrug resistance: in vitro and in vivo evaluation
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3630990/
https://www.ncbi.nlm.nih.gov/pubmed/23620663
http://dx.doi.org/10.2147/IJN.S42368
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