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Plant-derived secondary metabolites as the main source of efflux pump inhibitors and methods for identification

机译:植物衍生的次级代谢产物作为流出泵抑制剂的主要来源和识别方法

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摘要

The upsurge of multiple drug resistance (MDR) bacteria substantially diminishes the effectiveness of antibiotic arsenal and therefore intensifies the rate of therapeutic failure. The major factor in MDR is efflux pump-mediated resistance. A unique pump can make bacteria withstand a wide range of structurally diverse compounds. Therefore, their inhibition is a promising route to eliminate resistance phenomenon in bacteria. Phytochemicals are excellent alternatives as resistance-modifying agents. They can directly kill bacteria or interact with the crucial events of pathogenicity, thereby decreasing the ability of bacteria to develop resistance. Numerous botanicals display noteworthy efflux pumps inhibitory activities. Edible plants are of growing interest. Likewise, some plant families would be excellent sources of efflux pump inhibitors (EPIs) including Apocynaceae, Berberidaceae, Convolvulaceae, Cucurbitaceae, Fabaceae, Lamiaceae, and Zingiberaceae. Easily applicable methods for screening plant-derived EPIs include checkerboard synergy test, berberine uptake assay and ethidium bromide test. In silico high-throughput virtual detection can be evaluated as a criterion of excluding compounds with efflux substrate-like characteristics, thereby improving the selection process and extending the identification of EPIs. To ascertain the efflux activity inhibition, real-time PCR and quantitative mass spectrometry can be applied. This review emphasizes on efflux pumps and their roles in transmitting bacterial resistance and an update plant-derived EPIs and strategies for identification.
机译:多种耐药性(MDR)细菌的上升性显着减少了抗生素阿森纳的有效性,因此加剧了治疗失败的速率。 MDR的主要因素是Efflux泵介导的抗性。独特的泵可以使细菌能够承受各种结构不同的化合物。因此,它们的抑制是消除细菌中抗性现象的有希望的途径。植物化学品是抗性改性剂的优异替代品。它们可以直接杀死细菌或与致病性的关键事件相互作用,从而降低细菌抗性的能力。许多植物展示值得注意的Efflux泵抑制活动。可食用的植物越来越感兴趣。同样,一些植物家族将是流动泵抑制剂(EPIS)的优秀来源,包括Apocynaceae,Berberidaceae,Convolvulaceae,Cucurbitaceae,Fabaceae,Lamiaceae和Zingiberaceae。易于筛选植物衍生EPI的适用方法包括棋盘协同试验,小檗碱摄取测定和溴化乙锭试验。在硅高通量虚拟检测中,可以评估为排除具有流出基板状特征的化合物的标准,从而改善选择过程并扩展了EPI的识别。为了确定流出活性抑制,可以施加实时PCR和定量质谱。本综述强调了流动泵及其在传递细菌抗性和更新植物衍生的EPIS和识别策略方面的作用。

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