Institute for Bioscience and Biotechnology Research, University of Maryland, Rockville, Maryland 20850, United States.
Biomacromolecules. 2024 Oct 14;25(10):6791-6800. doi: 10.1021/acs.biomac.4c01008. Epub 2024 Sep 24.
Zwitterionic polymers, ampholytic macromolecules containing ionic moieties of opposite sign on the same pendant groups, exhibit strong protein-repulsive properties and an inherent biological inertness. For that reason, these highly hydrated inner salt macromolecules have emerged as some of the most viable alternatives to poly(ethylene glycol) (PEG), a gold standard in enabling stealth behavior in life science applications. However, the structural diversity of polymer zwitterions remains limited, and currently available macromolecules do not possess an intrinsic ability to undergo hydrolytical degradation, an important prerequisite for use in drug delivery applications. The present paper reports on the synthesis of a zwitterionic polymer, a multimerized form (two thousand copies), of a biologically benign buffering agent, HEPES, which is covalently assembled on a polyphosphazene backbone. The polymer exhibits typical polyzwitterionic solution behavior, an environmentally dependent hydrolytic degradation pattern, and excellent compatibility, features that highlight its potential utility for life science applications.
两性离子聚合物是指在同一侧基上含有相反符号离子基团的两性大分子,具有强烈的蛋白质排斥特性和固有的生物惰性。因此,这些高度水合的内盐大分子已成为聚乙二醇(PEG)的最可行替代品之一,PEG 是在生命科学应用中实现隐身行为的金标准。然而,聚合物两性离子的结构多样性仍然有限,并且目前可用的大分子不具有内在的可水解降解能力,这是在药物输送应用中使用的重要前提。本文报道了一种两性离子聚合物的合成,该聚合物是一种生物相容性良好的缓冲剂 HEPES 的多聚体形式(两千个拷贝),共价组装在聚磷腈骨架上。该聚合物表现出典型的聚两性离子溶液行为、环境依赖性的水解降解模式和优异的相容性,这些特性突出了其在生命科学应用中的潜在用途。