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首页> 外文期刊>Acta biomaterialia >High-density antimicrobial peptide coating with broad activity and low cytotoxicity against human cells
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High-density antimicrobial peptide coating with broad activity and low cytotoxicity against human cells

机译:高密度抗菌肽涂层,对人体细胞具有广泛的活性和低细胞毒性

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摘要

Medical device-associated infections are a multi-billion dollar burden for the worldwide healthcare systems. The modification of medical devices with non-leaching coatings capable of killing microorganisms on contact is one of the strategies being investigated to prevent microorganism colonization. Here we developed a robust antimicrobial coating based on the chemical immobilization of the antimicrobial peptide (AMP), cecropin-melittin (CM), on gold nanoparticles coated surfaces. The concentration of AMP immobilized (110 mu g/cm(2)) was higher than most of the studies reported so far (<10 mu g/cm(2)). This translated onto a coating with high antimicrobial activity against Gram positive and negative bacteria sp., as well as multi-drug resistant bacteria. Studies with E. coli reporter bacteria showed that these coatings induced the permeability of the outer membrane of bacteria in less than 5 min and the inner membrane in approximately 20 min. Importantly, the antimicrobial properties of the coating are maintained in the presence of 20% (v/v) human serum, and have low probability to induce bacteria resistance. We further show that coatings have low toxicity against human endothelial and fibroblast cells and is hemocompatible since it does not induce platelet and complement activation. The antimicrobial coating described here may be promising to prevent medical device-associated infections.
机译:医疗器械相关的感染给全球医疗系统带来数十亿美元的负担。使用能够在接触时杀死微生物的非浸出涂层对医疗器械进行改造是研究防止微生物定植的策略之一。在这里,我们基于金纳米粒子涂层表面上抗菌肽(AMP),天蚕素-蜂毒肽(CM)的化学固定化,开发了一种坚固的抗菌涂层。固定化AMP的浓度(110μg / cm(2))高于迄今为止报道的大多数研究(<10μg / cm(2))。这转化为对革兰氏阳性菌和阴性菌以及多种耐药菌具有高抗菌活性的涂层。对大肠杆菌报告细菌的研究表明,这些涂层在不到5分钟的时间内诱导了细菌外膜的渗透,在大约20分钟的时间内诱导了内膜的渗透。重要的是,在存在20%(v / v)的人血清的情况下,可以保持涂层的抗菌性能,并且诱导细菌耐药性的可能性很小。我们进一步表明,涂层对人内皮细胞和成纤维细胞的毒性低,并且具有血液相容性,因为它不会诱导血小板和补体激活。本文所述的抗菌涂层可能有望防止医疗器械相关的感染。

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