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合成和生物合成阳离子聚合物的抗菌活性和细胞选择性。

Antimicrobial Activity and Cell Selectivity of Synthetic and Biosynthetic Cationic Polymers.

机构信息

Anti-Infectives Research Group, Singapore Eye Research Institute, The Academia, Singapore.

Ophthalmology and Visual Sciences Academic Clinical Program, Duke-NUS Graduate Medical School, Singapore.

出版信息

Antimicrob Agents Chemother. 2017 Sep 22;61(10). doi: 10.1128/AAC.00469-17. Print 2017 Oct.

Abstract

The mammalian and microbial cell selectivity of synthetic and biosynthetic cationic polymers has been investigated. Among the polymers with peptide backbones, polymers containing amino side chains display greater antimicrobial activity than those with guanidine side chains, whereas ethylenimines display superior activity over allylamines. The biosynthetic polymer ε-polylysine (εPL) is noncytotoxic to primary human dermal fibroblasts at concentrations of up to 2,000 μg/ml, suggesting that the presence of an isopeptide backbone has greater cell selectivity than the presence of α-peptide backbones. Both εPL and linear polyethylenimine (LPEI) exhibit bactericidal properties by depolarizing the cytoplasmic membrane and disrupt preformed biofilms. εPL displays broad-spectrum antimicrobial properties against antibiotic-resistant Gram-negative and Gram-positive strains and fungi. εPL elicits rapid bactericidal activity against both Gram-negative and Gram-positive bacteria, and its biocompatibility index is superior to those of cationic antiseptic agents and LPEI. εPL does not interfere with the wound closure of injured rabbit corneas. In a rabbit model of bacterial keratitis, the topical application of εPL (0.3%, wt/vol) decreases the bacterial burden and severity of infections caused by and strains. imaging studies confirm that εPL-treated corneas appeared transparent and nonedematous compared to untreated infected corneas. Taken together, our results highlight the potential of εPL in resolving topical microbial infections.

摘要

已经研究了合成和生物合成阳离子聚合物对哺乳动物和微生物细胞的选择性。在具有肽骨架的聚合物中,含有氨基侧链的聚合物比含有胍基侧链的聚合物显示出更强的抗菌活性,而亚乙基亚胺比烯丙胺显示出更高的活性。生物合成聚合物 ε-聚赖氨酸(εPL)在高达 2000μg/ml 的浓度下对原代人真皮成纤维细胞无细胞毒性,这表明异肽骨架的存在比α-肽骨架的存在具有更高的细胞选择性。εPL 和线性聚乙烯亚胺(LPEI)通过去极化细胞质膜并破坏预先形成的生物膜来表现出杀菌特性。εPL 对具有抗药性的革兰氏阴性和革兰氏阳性菌株和真菌表现出广谱的抗菌特性。εPL 对革兰氏阴性和革兰氏阳性细菌均表现出快速的杀菌活性,其生物相容性指数优于阳离子防腐剂和 LPEI。εPL 不干扰受伤兔眼角膜的闭合。在兔细菌性角膜炎模型中,局部应用 0.3%(wt/vol)的 εPL 可降低 和 菌株引起的细菌负荷和感染严重程度。 成像研究证实,与未处理的感染角膜相比,εPL 处理的角膜看起来透明且无水肿。总之,我们的结果突出了 εPL 在解决局部微生物感染方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b467/5610535/d91c5d1bf20c/zac0101765920001.jpg

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