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Antiquorum sensing, antibiofilm formation and cytotoxicity activity of commonly used medicinal plants by inhabitants of Borabu sub-county, Nyamira County, Kenya

机译:肯尼亚尼亚米拉县博拉布县的居民对常用药用植物的抗静脉感应,抗生物膜形成和细胞毒活性

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摘要

Productions of various bacterial traits like production of virulence factors (e.g. toxins, enzymes), biofilm formation, luminescence among others, have been known to be controlled by quorum sensing (QS), a process that is dependent on chemical signals or autoinducers (AIs). Bacteria known to rely on such AIs are known to be virulent and tend to be resistant against various antimicrobial agents. Therefore, strategies aimed at the inhibition of QS pathways, are regarded as potential novel therapies in managing bacterial virulence hence reducing their ability to induce infections in humans. In the present study, a portfolio of 25 medicinal plant extracts (ethanol 50% v/v) used in southwestern Kenya were assayed against a transformed E. coli Top 10 reporter QS strain. This biosensor responds to the exogenous addition of 3-oxo-N-hexanoyl homoserine lactone (3OC6HSL) expressing green fluorescent protein (GFP). The large majority of the screened medicinal plants seemed to exhibit toxic effects and almost none of them induced antiquorum sensing (AQS) activity. This could be the consequence of the presence of mixed compounds in the extracts. Elaeodendron buchananii Loes and Acacia gerrardii Benth extracts that seemed to show AQS activity were further proved found to possess mild AQS but with defined antimicrobial activities, and no antibiofilm formation inhibition. As a control, an E. coli pBCA9145_jtk2828::sfGFP strain that produces constitutively GFP was used and confirmed that none of the two extracts quenched the fluorescence of sfGFP. Cytotoxicity assays with mammalian MDCK cells also did indicate that the selected extracts with putative AQS activity, also reduced the cell viability. Therefore, further studies will be needed to separate and re-test the individual compounds especially from the selected two promising plants.
机译:已知各种细菌性状的产生,例如毒力因子的产生(例如毒素,酶),生物膜形成,发光等,都由群体感应(QS)控制,该感应取决于化学信号或自动诱导物(AI) 。已知依赖于此类AI的细菌具有毒性,并且倾向于抵抗各种抗菌剂。因此,旨在抑制QS途径的策略被认为是控制细菌毒力从而降低其诱导人类感染能力的潜在新疗法。在本研究中,对肯尼亚西南部使用的25种药用植物提取物(50%v / v乙醇)进行了分析,以分析转化后的大肠杆菌Top 10报告基因QS菌株。该生物传感器对表达绿色荧光蛋白(GFP)的3-氧代-N-己酰基高丝氨酸内酯(3OC6HSL)的外源添加做出响应。筛选出的绝大多数药用植物似乎都表现出毒性作用,几乎没有一种能诱导抗群体感应(AQS)活性。这可能是提取物中存在混合化合物的结果。进一步证实了似乎具有AQS活性的胡子和阿拉伯金合欢提取物具有温和的AQS,但具有确定的抗菌活性,并且没有抑制生物膜形成的作用。作为对照,使用构成性产生GFP的大肠杆菌pBCA9145_jtk2828 :: sfGFP菌株,并证实两种提取物均未淬灭sfGFP的荧光。用哺乳动物MDCK细胞进行的细胞毒性试验也确实表明,具有假定的AQS活性的所选提取物也降低了细胞活力。因此,将需要进一步的研究来分离和重新测试特别是从选定的两种有前景的植物中分离出的化合物。

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