The Role of Quorum Quenching in Medical Application

Ghada A. Mohammad, Huda Waleed Hadi
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Abstract

The attempts are continuing in the various fields of life sciences to resolve a big problem, which is the ability of bacteria to cause pathogenicity for humans, animals, and plants, whether by chemical or biological methods and in ways that are hoped to be safe. Among these attempts, the control of the Quorum Sensing (QS) mechanism that occurs naturally in bacteria under certain conditions helps to increase the virulence of bacteria, starting from its ability to adhere and form a biofilm. Then, the tissues are invaded with various enzymes according to the tissue type, increasing antibiotic resistance. Therefore, the idea came to solve these problems through a mechanism opposite to the Quorum Quenching (QQ), which lies in the investigation of substances that can disrupt the QS pathway, whether at the molecular level or the physiological level, as well as benefiting from different organisms (Prokaryotes or Eukaryotes) that live in the same environment and produce substances that inhibit bacterial signaling molecules. Lastly, the discovery of varying novel QQ agents from extreme environmental bacteria will be most interesting in the future. Keywords: Quorum sensing, quorum quenching, acyl homoserine lactones, medical application
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定量淬火在医疗应用中的作用
生命科学的各个领域都在不断尝试解决一个大问题,即细菌对人类、动物和植物的致病能力,无论是通过化学方法还是生物方法,并希望这些方法是安全的。在这些尝试中,控制细菌在特定条件下自然产生的 "法定量感应"(Quorum Sensing,QS)机制有助于增强细菌的致病力,首先是增强其粘附和形成生物膜的能力。然后,细菌会根据组织类型利用各种酶侵入组织,增加抗生素耐药性。因此,人们产生了通过与 "定量淬灭"(QQ)相反的机制来解决这些问题的想法,即研究能在分子水平或生理水平上破坏 QS 途径的物质,并从生活在同一环境中并产生抑制细菌信号分子的物质的不同生物(原核生物或真核生物)中获益。最后,从极端环境细菌中发现不同的新型 QQ 药剂将是未来最有趣的研究方向:法定人数感应、法定人数淬灭、酰基高丝氨酸内酯、医学应用
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