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Quorum sensing inhibitors: a patent review (2014-2018)

机译:仲裁感应抑制剂:专利审查(2014-2018)

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Introduction: Quorum sensing (QS) is a cell density-dependent phenomenon in which specific pathways are activated after autoinducers (AIs) outside the microorganism reach a threshold concentration. QS creates a positive feedback loop that induces a cascade of gene expression and causes biofilm formation, virulence and sporulation. QS signals are diverse, acyl-homoserine lactone (AHL), AI peptide (AIP) and AI-2 are three major categories of QS signals. QS inhibitors (QSIs) can disrupt or prevent the formation of biofilm and reduce virulence while exerting less selective pressure on the bacteria, suggesting that QSIs are potential alternatives for antibiotics. Areas covered: This review summarized the pertinent patents on QS inhibition available from 2014 to 2018. The authors analyze these patents and provided an overview of them and their potential applications. Expert opinion: The main strategy for QS inhibition is to use the analogues of various QS signals to block downstream signal transducers. The inactivation of signal molecules or the stimulation of the immune response is also attractive strategies to inhibit QS. However, additional clinical trials are needed to assess their efficacy in mammals. In sum, QS inhibition can reduce the virulence of bacteria without affecting their growth or killing them and the reduced pressure may minimize the increasingly resistance.
机译:简介:群体感应(QS)是一种依赖细胞密度的现象,在这种现象中,微生物外部的自体诱导物(AI)达到阈值浓度后激活了特定途径。 QS创建一个正反馈回路,该回路诱导基因表达的级联并引起生物膜形成,毒力和孢子形成。 QS信号多种多样,酰基高丝氨酸内酯(AHL),AI肽(AIP)和AI-2是QS信号的三个主要类别。 QS抑制剂(QSIs)可以破坏或阻止生物膜的形成并降低毒力,同时对细菌产生较小的选择性压力,这表明QSIs是抗生素的潜在替代品。涵盖领域:这篇综述总结了2014年至2018年可获得的有关QS抑制的相关专利。作者对这些专利进行了分析,并对它们及其潜在应用进行了概述。专家意见:抑制QS的主要策略是使用各种QS信号的类似物来阻断下游信号传感器。信号分子的失活或免疫应答的刺激也是抑制QS的诱人策略。但是,还需要其他临床试验来评估其在哺乳动物中的功效。总而言之,抑制QS可以降低细菌的毒力而不影响细菌的生长或杀死细菌,而降低的压力可以最大程度地降低细菌的抵抗力。

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