Zhao Yi, Li Xiaoming, Zhao Xiaotian, Yang Yunqi, Li Hui, Zhou Xinbo, Yuan Weien
School of Pharmacy, Shanghai Jiao Tong UniversityShanghai, China.
School of Medicine, University of California, San FranciscoSan Francisco, CA, United States.
Front Pharmacol. 2017 Jun 20;8:374. doi: 10.3389/fphar.2017.00374. eCollection 2017.
Scientists have been attracted by polymersomes as versatile drug delivery systems since the last two decades. Polymersomes have the potential to be versatile drug delivery systems because of their tunable membrane formulations, stabilities , various physicochemical properties, controlled release mechanisms, targeting abilities, and capacities to encapsulate a wide range of drugs and other molecules. Asymmetrical polymersomes are nano- to micro-sized polymeric capsules with asymmetrical membranes, which means, they have different outer and inner coronas so that they can exhibit better endocytosis rate and endosomal escape ability than other polymeric systems with symmetrical membranes. Hence, asymmetrical polymersomes are highly promising as self-assembled nano-delivery systems in the future for therapeutics delivery and diagnostic imaging applications. In this review, we prepared a summary about recent research progresses of asymmetrical polymersomes in the following aspects: synthesis, preparation, applications in drug delivery and others.
在过去的二十年里,聚合物囊泡作为多功能药物递送系统一直吸引着科学家们。聚合物囊泡有潜力成为多功能药物递送系统,因为它们具有可调节的膜配方、稳定性、各种物理化学性质、控释机制、靶向能力以及封装多种药物和其他分子的能力。不对称聚合物囊泡是具有不对称膜的纳米到微米尺寸的聚合物胶囊,这意味着它们具有不同的外层和内层冠层,因此与其他具有对称膜的聚合物系统相比,它们可以表现出更好的内吞率和内体逃逸能力。因此,不对称聚合物囊泡作为未来用于治疗递送和诊断成像应用的自组装纳米递送系统具有很高的前景。在这篇综述中,我们对不对称聚合物囊泡在以下方面的最新研究进展进行了总结:合成、制备、在药物递送及其他方面的应用。