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Reversibly switchable polymer with cationic/ zwitterionic/anionic behavior through synergistic protonation and deprotonation

机译:通过协同质子化和去质子化而具有阳离子/两性离子/阴离子行为的可逆转换聚合物

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摘要

A polymer capable of fully and reversibly switching throughout the entire charge regime is highly desirable for many applications such as drug and gene delivery, controlled ion and molecular transport and tunable filtration membranes, it is essential that for biologically relevant applications the potymer needs to be nonfouling. However, conventional nonfouling zwitterionic polymers have a permanently positive quaternary nitrogen center, making it impossible to switch between charges. Here, we present a rationally designed polymer with a tertiary amine and a carboxylic acid, which is capable of reversibly switching among three distinct charged states, viz., cationic, zwitterionic and anionic, and importantly maintaining the zwitterionic state under physiological pH conditions. Oppositely charged proteins adsorbed on a charged surface selectively can be completely removed by switching the surface to the zwitterionic state. We have also found that these two moieties (i.e., a tertiary amine and a carboxylate moiety) stimulate each other synergistically to achieve a strongly zwitterionic state under physiological conditions and to resist non-specific protein adsorption from undiluted blood plasma and serum when they are close to each other.
机译:对于许多应用(例如药物和基因传递,可控的离子和分子传输以及可调节的滤膜),非常需要能够在整个充电过程中完全可逆转换的聚合物,对于生物学相关的应用,必须使聚结剂不结垢。 。然而,常规的不结垢两性离子聚合物具有永久性的正季铵氮中心,因此无法在电荷之间进行切换。在这里,我们提出了一种具有叔胺和羧酸的合理设计的聚合物,该聚合物能够在三种不同的带电状态(即阳离子,两性离子和阴离子)之间可逆转换,并且在生理pH条件下重要地保持两性离子状态。通过将表面切换为两性离子状态,可以选择性地完全去除吸附在带电表面上的带相反电荷的蛋白质。我们还发现,这两个部分(即叔胺和羧酸酯部分)在生理条件下相互协同刺激以实现强性两性离子状态,并在接近时抵抗未稀释的血浆和血清的非特异性蛋白质吸附对彼此。

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