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肽和蛋白质的单分散与多分散聚乙二醇化:一项比较研究。

Monodisperse and Polydisperse PEGylation of Peptides and Proteins: A Comparative Study.

作者信息

Wang Jie, Deng Tao, Liu Yuntai, Chen Kexin, Yang Zhigang, Jiang Zhong-Xing

机构信息

Hubei Province Engineering and Technology Research Center for Fluorinated Pharmaceuticals, School of Pharmaceutical Sciences, Wuhan University, Wuhan 430071, P. R. China.

出版信息

Biomacromolecules. 2020 Aug 10;21(8):3134-3139. doi: 10.1021/acs.biomac.0c00517. Epub 2020 Jul 20.

Abstract

Although PEGylation is widely used in biomedicine with great success, it suffers from many drawbacks, such as polydispersity, nonbiodegradability, and loss of precursor potency. Recently, the search for polyethylene glycol (PEG) substitutes has attracted considerable attention. Some of the substitutes partially address the drawbacks of PEGs, but sacrifice the "stealth" effect of PEGs and bring in new issues. Herein, we developed monodisperse oligoethylene glycol (M-OEG) polyamides over 5000 Da as biodegradable and monodisperse PEGylation (M-PEGylation) agents, which provided M-PEGylated peptides and proteins with high monodispersity and a biodegradable PEG moiety. Compared to regular PEGylated proteins with a complex "stealth" cloud of PEG, the hydrogen bond interactions between the M-OEG polyamides and proteins provided the M-PEGylated protein with a biodegradable "stealth" cloak. The monodisperse and biodegradable M-PEGylation strategy as well as the peculiar protein-M-OEG polyamide interactions may shed light on many long-lasting issues during the development of PEGylated biologic drugs, such as monodispersity, biodegradability, and tunable conformation.

摘要

尽管聚乙二醇化在生物医学中得到广泛应用并取得了巨大成功,但它存在许多缺点,如多分散性、不可生物降解性以及前体活性丧失。最近,寻找聚乙二醇(PEG)替代品引起了相当大的关注。一些替代品部分解决了PEG的缺点,但牺牲了PEG的“隐身”效果并带来了新问题。在此,我们开发了分子量超过5000 Da的单分散低聚乙二醇(M-OEG)聚酰胺作为可生物降解的单分散聚乙二醇化(M-PEGylation)试剂,它为M-PEG化肽和蛋白质提供了高单分散性和可生物降解的PEG部分。与具有复杂PEG“隐身”云的常规PEG化蛋白质相比,M-OEG聚酰胺与蛋白质之间的氢键相互作用为M-PEG化蛋白质提供了可生物降解的“隐身”外衣。单分散且可生物降解的M-PEGylation策略以及独特的蛋白质-M-OEG聚酰胺相互作用可能为PEG化生物药物开发过程中的许多长期问题提供启示,如单分散性、生物降解性和可调节构象。

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