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Polypseudorotaxane Constructed from Cationic Polymer with Cucurbit[7]uril for Controlled Antibacterial Activity

机译:含葫芦[7]尿素的阳离子聚合物构建的聚拟轮烷具有可控的抗菌活性

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摘要

This letter is aimed to develop a general strategy to fabricate polypseudorotaxanes with controlled antibacterial activity based on cationic polymers. As a proof of concept, the commercially available antibacterial cationic polymer, epsilon-poly-L-lysine hydrochloride, was chosen for the demonstration. Using host guest chemistry, cucurbit[7]uril (CB[7]), a water-soluble macrocyclic host, was employed to bind with the positive charge and hydrophobic component on epsilon-poly-L-lysine hydrochlorides for antibacterial regulation. In this way, by tuning the ratio of CB[7] to the cationic polymer, the antibacterial polypseudorotaxane can be obtained, and the antibacterial efficiency can be well tuned from 5% to 100%. This line of research will enrich the field of cationic polymers and polypseudorotaxanes with important functions on precise control over antibacterial activity.
机译:这封信旨在发展一种一般策略,以阳离子聚合物为基础,制造具有受控抗菌活性的聚假轮烷。作为概念验证,选择了市售的抗菌阳离子聚合物,ε-聚-L-赖氨酸盐酸盐进行演示。利用宿主客体化学方法,将葫芦[7]尿素(CB [7])(一种水溶性大环基质)与ε-聚-L-赖氨酸盐酸盐上的正电荷和疏水性成分结合,以进行抗菌调节。这样,通过调节CB [7]与阳离子聚合物的比例,可以得到抗菌的聚假轮烷,抗菌效率可以从5%调到100%。该研究领域将丰富阳离子聚合物和聚伪轮烷的领域,这些领域在精确控制抗菌活性方面具有重要作用。

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