多阳离子抗菌剂的构效关系及表面固定化

M. Widodo, Sophie Anggitta Raharjani Raharjani
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引用次数: 0

摘要

在过去的几十年里,抗菌剂一直是科学界感兴趣的主题。然而,新型冠状病毒的出现和随之而来的大流行给抗菌研究领域带来了新的紧迫感。缓解大流行的最紧迫需求是自我消毒的卫生设备和抗菌防护设备,如卫生保健工作者的长袍和公众的口罩。在对抗菌产品的高需求的时候,了解抗菌聚合物的机制将是有益的。本文从抗菌药物的定义、作用方式分类、化学结构等方面阐述了抗菌药物的基本概念和作用原理。接着讨论了影响抗菌活性的因素,这是本文的重点。回顾的第一部分涉及溶液中的游离抗菌聚合物。着重讨论了分子量、反离子、间隔层长度和烷基链对抗菌聚合物效果的影响。第二部分的重点转向表面固定化抗菌聚合物及其固定化方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
STRUCTURE-ACTIVITY RELATIONSHIPS AND SURFACE IMMOBILIZATION OF POLYCATIONIC ANTIMICROBIALS
Antimicrobial agents have been the subject of scientific interest for the last few decades. However, the emergence of a novel coronavirus and pandemic that ensued has brought a new sense of urgency to the field of antibacterial research. The most urgent needs to mitigate the pandemic are self-disinfecting health equipment and antimicrobial protective equipment such as gowns for healthcare workers and face masks for the general public. At a time of high demand for antimicrobial products, understanding the mechanisms involved in antimicrobial polymers will be a benefit. In this review, the definition of antimicrobials and their classification according to the mode of action, as well as their chemical structure, were explained and used to build the fundamental understanding about antimicrobials and the working principles behind their action. The discussion continued with factors that affect the antimicrobial activity, which is the focus of the review.  The first part of the review deals with free antimicrobial polymers in solution. The effect of molecular weight, counterions, spacer length and alkyl chain to the efficacy of antimicrobial polymers are highlighted and discussed at length. Focus in the second part shifts towards surface-immobilized antimicrobial polymers and their methods of immobilization.
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