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基于前荧光素聚对苯撑乙烯的胶束系统作为生物成像和药物递送的通用探针。

Profluorescent PPV-Based Micellar System as a Versatile Probe for Bioimaging and Drug Delivery.

作者信息

Zaquen Neomy, Lu Hongxu, Chang Teddy, Mamdooh Russel, Lutsen Laurence, Vanderzande Dirk, Stenzel Martina, Junkers Tanja

机构信息

Institute for Materials Research, Hasselt University , Martelarenlaan 42, 3500 Hasselt, Belgium.

Center for Advanced Macromolecular Design (CAMD), School of Chemistry, University of New South Wales , Sydney, NSW 2052, Australia.

出版信息

Biomacromolecules. 2016 Dec 12;17(12):4086-4094. doi: 10.1021/acs.biomac.6b01653. Epub 2016 Nov 29.

Abstract

Although micelles are commonly used for drug delivery purposes, their long-term fate is often unknown due to photobleaching of the fluorescent labels or the use of toxic materials. Here, we present a metal-free, nontoxic, nonbleaching, fluorescent micelle that can address these shortcomings. A simple, yet versatile, profluorescent micellar system, built from amphiphilic poly(p-phenylenevinylene) (PPV) block copolymers, for use in drug delivery applications is introduced. Polymer micelles made from PPV show excellent stability for up to 1 year and are successfully loaded with anticancer drugs (curcumin or doxorubicin) without requiring introduction of physical or chemical cross-links. The micelles are taken up efficiently by the cells, which triggers disassembly, releasing the encapsulated material. Disassembly of the micelles and drug release is conveniently monitored as fluorescence of the single polymer chains appear, which enables not only to monitor the release of the payload, but in principle also the fate of the polymer over longer periods of time.

摘要

尽管胶束通常用于药物递送目的,但由于荧光标记的光漂白或有毒材料的使用,它们的长期命运往往未知。在此,我们展示了一种无金属、无毒、不漂白的荧光胶束,它可以解决这些缺点。介绍了一种简单但通用的前荧光胶束系统,该系统由两亲性聚对苯撑乙烯(PPV)嵌段共聚物构建而成,用于药物递送应用。由PPV制成的聚合物胶束在长达1年的时间内表现出优异的稳定性,并且无需引入物理或化学交联即可成功负载抗癌药物(姜黄素或阿霉素)。胶束被细胞有效摄取,从而触发分解,释放封装的物质。随着单个聚合物链荧光的出现,可以方便地监测胶束的分解和药物释放,这不仅能够监测有效载荷的释放,原则上还能监测聚合物在更长时间段内的命运。

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