农业废弃物中生物活性成分的分数抑制浓度可分解生物膜并抑制院内病原体的毒力。

Srividhya Krishnan, Ponnusami Venkatachalam, Saravanan Ramiah Shanmugam, Nithyanand Paramasivam
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引用次数: 0

摘要

介绍。医院的接触表面是病原体的储存库,占医院获得性感染的20-40%。这种抗性主要归因于微生物的生物膜形成能力。这些生物膜限制了抗生素的进入,从而产生耐药性。因此,人们对开发一种环保、无过敏、快速、广谱的消毒剂重新产生了兴趣。我们假设热解水相中存在的纯化合物可以作为抗感染和抗生物膜剂。本文研究了糠醇、2-甲基-2-环戊酮和愈创木酚作为有效的抗感染药物的有效性,并测试了其对多种多重耐药病原体如鲍曼不动杆菌、耐甲氧西林金黄色葡萄球菌和金黄色念珠菌的生物膜根除能力。采用棋盘法测定两化合物和三化合物组合的MIC和分数抑制浓度(FIC)。在不锈钢板上进行生物膜清除浓度,然后进行RNA分离和定量PCR (qPCR)分析,以阐明毒力基因的下调。糠醇、2-甲基-2-环戊酮和愈创木酚的mic分别为8%、9%和2% (v/v)。两化合物联合的FIC指数为0.75,表明化合物之间存在部分协同作用,而三化合物联合的FIC指数为0.87,表明化合物之间存在加性效应。此外,在½FIC(生物膜抑制浓度)下,化合物对医院接触面(不锈钢)上的预成型生物膜的根除率为52%。生长曲线和杀伤时间曲线表明,化合物在BIC下对浮游细胞无杀伤作用。最后,qPCR分析显示,生物膜和粘附基因的表达水平降低,而群体感应(Quorum sensing, QS)基因受到的影响更大,从而阐明了可能的根除机制。从这项研究中,我们发现了一类具有潜在消毒能力的新化合物。根据目前的知识,未来的领先优势将是在消毒剂配方中有效地使用它们。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fractional inhibitory concentration of bio-actives from agricultural waste disassembles biofilms and quenches virulence of nosocomial pathogens.

Introduction. The contact surfaces in hospitals serve as reservoirs for pathogens and account for 20-40% of hospital-acquired infections. This resistance is mainly attributed to the biofilm-forming ability of the microbes. These biofilms restrict the entry of the antibiotics to penetrate them, thus giving rise to drug resistance. Hence, there is a renewed interest in formulating an environmentally friendly, non-allergic, quick mode of action, broad-spectrum disinfectant.Hypothesis. We hypothesize that the pure compounds present in the pyrolysis aqueous phase could act as an anti-infective and anti-biofilm agent.Aim. The present work investigates the effectiveness of furfuryl alcohol, 2-methyl-2-cyclopentenone and guaiacol as effective anti-infective agent followed by testing its biofilm eradication potential against the mixed species of multidrug-resistant pathogens such as Acinetobacter baumannii, methicillin-resistant Staphylococcus aureus and Candida auris.Methodology. The MIC and fractional inhibitory concentrations (FIC) of the pure compounds were determined using checkerboard assay for two-compound and three-compound combinations. The biofilm eradication concentration was performed on stainless coupons, followed by RNA isolation and quantitative PCR (qPCR) analysis to elucidate virulence gene downregulation.Results. The individual MICs of furfuryl alcohol, 2-methyl-2-cyclopentenone and guaiacol were found to be 8%, 9% and 2% (v/v), respectively. The two-compound combination FIC index of 0.75 showed partial synergy between the compounds, while the three-compound combination showed an additive effect with a FIC index of 0.87. Further, at ½ FIC (biofilm inhibitory concentration), the compounds showed 52% eradication of preformed biofilms on the hospital contact surfaces (stainless steel). The growth and time-to-kill curve showed that the compounds were not lethal to planktonic cells at BIC. Finally, the qPCR analysis showed a reduction in the expression levels of biofilm and adhesion genes, while the Quorum sensing (QS) genes were affected much more, elucidating a possible eradication mechanism.Conclusion. From this study, we have found a new class of compounds that have potential disinfecting ability. With the current knowledge, the future lead would be to effectively use them in disinfectant formulations.

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