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Combination Therapy Strategy of Quorum Quenching Enzyme and Quorum Sensing Inhibitor in Suppressing Multiple Quorum Sensing Pathways of P. aeruginosa

机译:铜绿假单胞菌多种群体感应途径的群体猝灭酶和群体感应抑制剂联合治疗策略

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摘要

The threat of antibiotic resistant bacteria has called for alternative antimicrobial strategies that would mitigate the increase of classical resistance mechanism. Many bacteria employ quorum sensing (QS) to govern the production of virulence factors and formation of drug-resistant biofilms. Targeting the mechanism of QS has proven to be a functional alternative to conventional antibiotic control of infections. However, the presence of multiple QS systems in individual bacterial species poses a challenge to this approach. Quorum sensing inhibitors (QSI) and quorum quenching enzymes (QQE) have been both investigated for their QS interfering capabilities. Here, we first simulated the combination effect of QQE and QSI in blocking bacterial QS. The effect was next validated by experiments using AiiA as QQE and G1 as QSI on Pseudomonas aeruginosa LasR/I and RhlR/I QS circuits. Combination of QQE and QSI almost completely blocked the P. aeruginosa las and rhl QS systems. Our findings provide a potential chemical biology application strategy for bacterial QS disruption.
机译:抗生素抗药性细菌的威胁已要求采用替代的抗微生物策略,以减轻经典抗药性机制的增加。许多细菌采用群体感应(QS)来控制毒力因子的产生和耐药生物膜的形成。靶向QS机制已被证明是常规抗生素控制感染的功能替代品。但是,单个细菌物种中存在多个QS系统对该方法提出了挑战。已经对群体感应抑制剂(QSI)和群体猝灭酶(QQE)的QS干扰能力进行了研究。在这里,我们首先模拟了QQE和QSI在阻止细菌QS中的联合作用。接下来,通过在铜绿假单胞菌LasR / I和RhlR / I QS电路上使用AiiA作为QQE和G1作为QSI的实验来验证效果。 QQE和QSI的组合几乎完全阻塞了铜绿假单胞菌las和rhl QS系统。我们的发现为细菌QS破坏提供了潜在的化学生物学应用策略。

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