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通过纳米载体递送的生物活性物质的内涵体逃逸:对聚合物胶束设计的见解

Endosomal Escape of Bioactives Deployed via Nanocarriers: Insights Into the Design of Polymeric Micelles.

作者信息

Butt Adeel Masood, Abdullah Nabiha, Rani Nur Najihah Izzati Mat, Ahmad Naveed, Amin Mohd Cairul Iqbal Mohd

机构信息

Institute of Pharmaceutical Sciences, University of Veterinary and Animal Sciences, Lahore, 54000, Pakistan.

Department of Pharmacy, Quaid-i-Azam University, 45320, Islamabad, Pakistan.

出版信息

Pharm Res. 2022 Jun;39(6):1047-1064. doi: 10.1007/s11095-022-03296-w. Epub 2022 May 26.

Abstract

Cytoplasmic delivery of bioactives requires the use of strategies such as active transport, electroporation, or the use of nanocarriers such as polymeric nanoparticles, liposomes, micelles, and dendrimers. It is essential to deliver bioactive molecules in the cytoplasm to achieve targeted effects by enabling organelle targeting. One of the biggest bottlenecks in the successful cytoplasmic delivery of bioactives through nanocarriers is their sequestration in the endosomes that leads to the degradation of drugs by progressing to lysosomes. In this review, we discussed mechanisms by which nanocarriers are endocytosed, the mechanisms of endosomal escape, and more importantly, the strategies that can be and have been employed for their escape from the endosomes are summarized. Like other nanocarriers, polymeric micelles can be designed for endosomal escape, however, a careful control is needed in their design to balance between the possible toxicity and endosomal escape efficiency. Keeping this in view, polyion complex micelles, and polymers that have the ability to escape the endosome, are fully discussed. Finally, we provided some perspectives for designing the polymeric micelles for efficient cytoplasmic delivery of bioactive agents through endosomal escape.

摘要

生物活性物质的细胞质递送需要采用主动运输、电穿孔等策略,或使用纳米载体,如聚合物纳米颗粒、脂质体、胶束和树枝状大分子。将生物活性分子递送至细胞质对于通过细胞器靶向实现靶向效应至关重要。通过纳米载体成功进行生物活性物质的细胞质递送的最大瓶颈之一是它们被隔离在内体中,这会导致药物通过进入溶酶体而降解。在这篇综述中,我们讨论了纳米载体被内吞的机制、内体逃逸的机制,更重要的是,总结了可用于以及已用于使其从内体逃逸的策略。与其他纳米载体一样,聚合物胶束可以设计用于内体逃逸,然而,在其设计中需要仔细控制,以平衡可能的毒性和内体逃逸效率。考虑到这一点,对聚离子复合胶束以及具有内体逃逸能力的聚合物进行了充分讨论。最后,我们提供了一些关于设计聚合物胶束以通过内体逃逸实现生物活性剂高效细胞质递送的观点。

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