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聚合物囊泡作为眼部药物递送系统的现状与潜力

Current state and potential of polymersomes as ocular drug delivery systems.

作者信息

Yetisgin Abuzer Alp, Sivakumar Ponnurengam Malliappan, Cetinel Sibel

机构信息

Nanotechnology Research and Application Center (SUNUM), Sabanci University, Istanbul 34956, Türkiye.

Faculty of Engineering and Natural Sciences, Sabanci University, Istanbul 34956, Türkiye.

出版信息

Nanoscale. 2025 Jun 19;17(24):14458-14476. doi: 10.1039/d5nr01273b.

Abstract

Amphiphilic copolymers can spontaneously form different structures such as micelles, worm-like micelles, and spherical and tubular polymersomes, determined by the ratio of hydrophilic and hydrophobic blocks. Among them, polymersomes are composed of an aqueous core and a hydrophobic membrane that can encapsulate hydrophilic and hydrophobic drugs. Significant effort has been dedicated to developing polymersomes for targeted delivery of drugs, particularly in cancer therapy. Nonetheless, polymersomes hold great potential for drug delivery to the ocular tissues as well. Polymersomes provide various advantages as ocular drug delivery systems due to their chemical and physical adaptability, ability to encapsulate multiple drugs, and precise control over parameters including size, shape, membrane characteristics, drug release, ability to traverse biological barriers, and responsiveness to stimuli. Despite the limited research to date, polymersomes, with their superior mobility within ocular compartments and their tunable properties, should be considered a promising option for ocular drug delivery, surpassing other vesicular systems such as liposomes and niosomes. In this review, we assessed the possibility of polymersomes as carriers for delivering drugs to ocular tissues.

摘要

两亲性共聚物可自发形成不同结构,如胶束、蠕虫状胶束以及球形和管状聚合物囊泡,其结构由亲水和疏水嵌段的比例决定。其中,聚合物囊泡由水相核心和疏水膜组成,能够包封亲水和疏水药物。人们已付出巨大努力来开发用于药物靶向递送的聚合物囊泡,尤其是在癌症治疗方面。尽管如此,聚合物囊泡在眼部组织药物递送方面也具有巨大潜力。聚合物囊泡作为眼部药物递送系统具有多种优势,这归因于其化学和物理适应性、包封多种药物的能力以及对包括大小、形状、膜特性、药物释放、穿越生物屏障的能力和对刺激的响应性等参数的精确控制。尽管迄今为止相关研究有限,但聚合物囊泡因其在眼内 compartments 内具有卓越的流动性及其可调节的特性,应被视为眼部药物递送的一个有前景的选择,优于脂质体和非离子表面活性剂囊泡等其他囊泡系统。在本综述中,我们评估了聚合物囊泡作为药物递送至眼部组织载体的可能性。

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