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设计并评估用药物相互作用结构域功能化的甲氧基聚乙二醇-聚乳酸共聚物胶束作为多西他赛递送的改良药物载体。

Design and evaluation of mPEG-PLA micelles functionalized with drug-interactive domains as improved drug carriers for docetaxel delivery.

作者信息

Qi Dingqing, Gong Feirong, Teng Xin, Ma Mingming, Wen Huijing, Yuan Weihao, Cheng Yi, Lu Chong

机构信息

a Key Laboratory for Ultrafine Materials of Ministry of Education, School of Materials Science and Engineering , East China University of Science and Technology , Shanghai , China.

出版信息

J Biomater Sci Polym Ed. 2017 Oct;28(14):1538-1555. doi: 10.1080/09205063.2017.1333699. Epub 2017 May 31.

Abstract

Polymeric micelles are very attractive drug delivery systems for hydrophobic agents, owing to their readily tailorable chemical structure and ease for scale-up preparation. However, the intrinsic poor stability of drug-loaded micelles presents one of the major challenges for most micellar systems in the translation to clinical applications. In this study, a simple, well-defined, and easy-to-scale up 9-Fluorenylmethoxycarbonyl (Fmoc) and tert-butoxycarbonyl (Boc) containing lysine dendronized mPEG-PLA (mPEG-PLA-Lys(FB)) micellar formulation was designed and prepared for docetaxel (DTX) delivery, in an effort to improve the stability of the micelles, and its physicochemical properties, pharmacokinetics, and anti-tumor efficacy against SKOV-3 ovarian cancer were evaluated. MPEG-PLA-Lys(FB) was synthesized via a three-step synthetic route, and it actively interacted with DTX in aqueous media to form stable micelles with small particle sizes (~17-19 nm) and narrow size distribution (PI < 0.1), which can be lyophilized and easily reconstituted in saline without significant change in particle size distribution. In vitro drug-release study demonstrated that mPEG-PLA-Lys(FB) micelles achieved delayed and sustained release manner of DTX in comparison with mPEG-PLA micelles. Further in vivo xenograft tumor model in nude mice DTX/mPEG-PLA-Lys(FB) micelles demonstrated significantly higher inhibitory effect on tumor growth than the marketed formulation Taxotere. Thus, our system may hold promise as a simple and effective delivery system for DTX with a potential for translation into clinical study.

摘要

聚合物胶束因其易于定制的化学结构和易于放大制备的特点,是用于疏水性药物的极具吸引力的药物递送系统。然而,载药胶束固有的稳定性差是大多数胶束系统在转化为临床应用时面临的主要挑战之一。在本研究中,设计并制备了一种简单、明确且易于放大的含9-芴甲氧羰基(Fmoc)和叔丁氧羰基(Boc)的赖氨酸树枝状化甲氧基聚乙二醇-聚乳酸(mPEG-PLA-Lys(FB))胶束制剂用于多西他赛(DTX)递送,以提高胶束的稳定性,并对其理化性质、药代动力学以及对SKOV-3卵巢癌的抗肿瘤疗效进行了评估。MPEG-PLA-Lys(FB)通过三步合成路线合成,它在水性介质中与DTX积极相互作用,形成粒径小(约17 - 19纳米)且粒径分布窄(PI < 0.1)的稳定胶束,该胶束可冻干并易于在盐水中重构,粒径分布无显著变化。体外药物释放研究表明,与mPEG-PLA胶束相比,mPEG-PLA-Lys(FB)胶束实现了DTX的延迟和持续释放。进一步在裸鼠体内异种移植瘤模型中,DTX/mPEG-PLA-Lys(FB)胶束对肿瘤生长的抑制作用明显高于市售制剂泰索帝。因此,我们的系统有望成为一种简单有效的DTX递送系统,具有转化为临床研究的潜力。

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