摘要
多药耐药细菌的持续出现和传播有助于开发替代治疗策略,包括抗菌药物。一种有希望的方法是靶向细胞间通信,通常称为群体感应(QS)和微生物生物膜形成。 Quorum Sensing是一种用于细菌的方法,用于确定其生理行为并基于细胞与细胞信号传导协调基因表达。细菌的许多生理功能受到群体感觉的控制,例如毒力,运动性,孢子形成,发光和生物膜形成。微生物生物膜是附着于基质的细胞的有组织聚集体,并且由自生产的聚合物质(EPS)基质包围。目前,生物膜形成和群体感应被认为是用于控制多药耐药性感染的抗微生物治疗的前瞻性新靶标。在此背景下,已经对基于植物的天然产物进行了全面研究。在这篇综述中,综述了过去十年发表的关于能够抑制群体感应或微生物生物膜形成的植物衍生分子的各种研究论文,提到了活性化合物的生物合成类别及其在进行的分析中的生物活性
关键词: 抗菌活性,生物膜,药用植物,群体感应抑制剂,多药耐药细菌。
图形摘要
Current Drug Targets
Title:Microbial Biofilm and Quorum Sensing Inhibition: Endowment of Medicinal Plants to Combat Multidrug-Resistant Bacteria
Volume: 19 Issue: 16
关键词: 抗菌活性,生物膜,药用植物,群体感应抑制剂,多药耐药细菌。
摘要: Continued emergence and spread of multidrug-resistant bacteria behooved the development of alternative treatment strategies, including antimicrobial drugs. A hopeful approach is to target cellto- cell communications, commonly known as quorum-sensing (QS) and microbial biofilm formation. Quorum Sensing is a method used on bacteria to determine their physiological behavior and coordinate gene expression based on the cell to cell signaling. Many physiological functions of bacteria are controlled by quorum sensings such as virulence, motility, sporulation, luminescence, and biofilm formation. Microbial biofilms are organized aggregations of cells attached to a substratum and surrounded by a self-produced extrapolymeric substance (EPS) matrix. Currently, biofilm formation and quorum sensing are considered as a prospective novel target for antimicrobial therapy to control multidrug- resistant infections. Plant-based natural products have been comprehensively studied in this context. In this review, a comprehensive overview of various research papers published in the last decade on plant-derived molecules that are capable of inhibiting quorum sensing or microbial biofilm formation is reviewed, mentioning the biosynthetic classes of active compounds and their biological activity in the performed assays.
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Cite this article as:
Microbial Biofilm and Quorum Sensing Inhibition: Endowment of Medicinal Plants to Combat Multidrug-Resistant Bacteria, Current Drug Targets 2018; 19 (16) . https://dx.doi.org/10.2174/1389450119666180406111143
DOI https://dx.doi.org/10.2174/1389450119666180406111143 |
Print ISSN 1389-4501 |
Publisher Name Bentham Science Publisher |
Online ISSN 1873-5592 |
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