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聚合物胶束的结构修饰以赋予多功能性用于改善药物递送。

Structural modifications in polymeric micelles to impart multifunctionality for improved drug delivery.

作者信息

Mittal Anupama, Chitkara Deepak

机构信息

Department of Pharmacy, Birla Institute of Technology & Science (BITS), Pilani, Vidya Vihar Campus, Rajasthan, 333031 India.

出版信息

Ther Deliv. 2016;7(2):73-87. doi: 10.4155/tde.15.90. Epub 2016 Jan 15.

Abstract

Polymeric micelles are macromolecular nanoconstructs which are formed by self-assembly of synthetic amphiphilic block copolymers. These copolymers could be chemically modified to expand their functionality and hence obtain a multifunctional micelle which could serve several functions simultaneously, for example, long circulation time along with active targeting, smart polymeric micelles providing on-demand drug release for example, pH responsive micelles, redox- and light-sensitive micelles, charge-conversion micelles and core/shell cross-linked micelles. Additionally, micelles could be tailored to carry a contrast agent or siRNA/miRNA along with the drug for greater clinical benefit. The focus of the current commentary would be to highlight such chemical modifications which impart multifunctionality to a single carrier and discuss challenges involved in clinical translation of these multifunctional micelles.

摘要

聚合物胶束是由合成两亲性嵌段共聚物自组装形成的大分子纳米结构体。这些共聚物可以进行化学修饰以扩展其功能,从而获得能够同时发挥多种功能的多功能胶束,例如,具有长循环时间并兼具主动靶向功能,智能聚合物胶束可实现按需释药,例如pH响应性胶束、氧化还原和光敏感胶束、电荷转换胶束以及核/壳交联胶束。此外,胶束可以进行定制,使其在携带药物的同时还能携带造影剂或siRNA/miRNA,以获得更大的临床益处。本评论的重点将是突出赋予单一载体多功能性的此类化学修饰,并讨论这些多功能胶束临床转化过程中涉及的挑战。

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