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超低污染、功能化、可水解两性离子材料及其衍生物在生物领域的应用。

Ultralow-fouling, functionalizable, and hydrolyzable zwitterionic materials and their derivatives for biological applications.

机构信息

Department of Chemical Engineering University of Washington Seattle, WA 98195, USA.

出版信息

Adv Mater. 2010 Mar 5;22(9):920-32. doi: 10.1002/adma.200901407.

Abstract

In recent years, zwitterionic materials such as poly(carboxybetaine) (pCB) and poly(sulfobetaine) (pSB) have been applied to a broad range of biomedical and engineering materials. Due to electrostatically induced hydration, surfaces coated with zwitterionic groups are highly resistant to nonspecific protein adsorption, bacterial adhesion, and biofilm formation. Among zwitterionic materials, pCB is unique due to its abundant functional groups for the convenient immobilization of biomolecules. pCB can also be prepared in a hydrolyzable form as cationic pCB esters, which can kill bacteria or condense DNA. The hydrolysis of cationic pCB esters into nonfouling zwitterionic groups will lead to the release of killed microbes or the irreversible unpackaging of DNA. Furthermore, mixed-charge materials have been shown to be equivalent to zwitterionic materials in resisting nonspecific protein adsorption when they are uniformly mixed at the molecular scale.

摘要

近年来,两性离子材料如聚(羧酸甜菜碱)(pCB)和聚(磺酸甜菜碱)(pSB)已广泛应用于生物医学和工程材料。由于静电诱导水合作用,涂有两性离子基团的表面能高度抵抗非特异性蛋白质吸附、细菌黏附和生物膜形成。在两性离子材料中,pCB 因其丰富的官能团而具有独特的功能,可方便地固定生物分子。pCB 还可以以可水解的形式制备为阳离子 pCB 酯,可杀死细菌或使 DNA 凝聚。阳离子 pCB 酯水解成非污性两性离子基团,将导致被杀死的微生物释放或 DNA 的不可逆解包。此外,当混合电荷材料在分子尺度上均匀混合时,它们在抵抗非特异性蛋白质吸附方面与两性离子材料等效。

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