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防污及抗菌生物材料:综述

Antifouling and antimicrobial biomaterials: an overview.

作者信息

Francolini Iolanda, Vuotto Claudia, Piozzi Antonella, Donelli Gianfranco

机构信息

Department of Chemistry, Sapienza University of Rome, Rome.

Microbial Biofilm Laboratory, IRCCS Fondazione Santa Lucia, Rome.

出版信息

APMIS. 2017 Apr;125(4):392-417. doi: 10.1111/apm.12675.

Abstract

The use of implantable medical devices is a common and indispensable part of medical care for both diagnostic and therapeutic purposes. However, as side effect, the implant of medical devices quite often leads to the occurrence of difficult-to-treat infections, as a consequence of the colonization of their abiotic surfaces by biofilm-growing microorganisms increasingly resistant to antimicrobial therapies. A promising strategy to combat device-related infections is based on anti-infective biomaterials that either repel microbes, so they cannot attach to the device surfaces, or kill them in the surrounding areas. In general, such biomaterials are characterized by antifouling coatings, exhibiting low adhesion or even repellent properties towards microorganisms, or antimicrobial coatings, able to kill microbes approaching the surface. In this light, the present overview will address the development in the last two decades of antifouling and antimicrobial biomaterials designed to potentially limit the initial stages of microbial adhesion, as well as the microbial growth and biofilm formation on medical device surfaces.

摘要

植入式医疗设备的使用是医疗保健中常见且不可或缺的一部分,用于诊断和治疗目的。然而,作为副作用,医疗器械的植入常常导致难以治疗的感染发生,这是由于生物膜生长的微生物在其非生物表面定植,这些微生物对抗菌疗法的耐药性日益增强。一种对抗与设备相关感染的有前景的策略基于抗感染生物材料,这些材料要么排斥微生物,使其无法附着在设备表面,要么在周围区域杀死它们。一般来说,此类生物材料的特点是具有防污涂层,对微生物表现出低粘附性甚至排斥性,或者是抗菌涂层,能够杀死接近表面的微生物。有鉴于此,本综述将探讨过去二十年中旨在潜在限制微生物粘附初始阶段以及医疗器械表面微生物生长和生物膜形成的防污和抗菌生物材料的发展情况。

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