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评估香芹酚作为细菌生理状态函数的最佳外排抑制剂浓度。

Estimating the optimal efflux inhibitor concentration of carvacrol as a function of the bacterial physiological state.

作者信息

Jánosity Anna, Baranyi József, Surányi Botond Bendegúz, Možina Sonja Smole, Taczman-Brückner Andrea, Kiskó Gabriella, Klančnik Anja

机构信息

Department of Food Microbiology, Hygiene and Safety, Institute of Food Science and Technology, Hungarian University of Agriculture and Life Sciences, Budapest, Hungary.

Department of Food Science and Technology, Biotechnical Faculty, University of Ljubljana, Ljubljana, Slovenia.

出版信息

Front Microbiol. 2023 Jan 25;14:1073798. doi: 10.3389/fmicb.2023.1073798. eCollection 2023.

Abstract

Our aim was to find the optimal efflux inhibitor concentration of a natural component, carvacrol, as a function of the physiological state of . Using fluorescence-based measurements with two strains of , the effect of carvacrol was assessed at 17 sub-inhibitory concentrations, at which the bacterial efflux mechanism was compromised. The efficacy of carvacrol, as an efflux inhibitor, was compared to synthetic inhibitors and we found carvacrol the most efficient one. We considered the accumulation of Ethidium Bromide (EtBr) as a proxy for drugs spreading in the cell, thus measuring the efflux activity indirectly. The change in membrane integrity caused by the exposure to carvacrol was monitored using the LIVE/DEAD BacLight Bacterial Viability kit. To find the optimal inhibitory concentration of carvacrol, we used predictive microbiology methods. This optimum varied with the bacterial physiological state, as non-growing cultures were less susceptible to the effect of carvacrol than growing cultures were. Moreover, we point out, for the first time, that the efflux-mediated resistance of untreated cultures was also stronger in the non-growing than in the growing phase at population level.

摘要

我们的目标是确定天然成分香芹酚作为[某种物质]生理状态函数的最佳外排抑制剂浓度。使用基于荧光的测量方法对两种[细菌菌株名称]进行测量,在17个亚抑制浓度下评估香芹酚的作用,此时细菌外排机制受到损害。将香芹酚作为外排抑制剂的功效与合成抑制剂进行比较,我们发现香芹酚是最有效的一种。我们将溴化乙锭(EtBr)的积累视为药物在细胞内扩散的指标,从而间接测量外排活性。使用LIVE/DEAD BacLight细菌活力试剂盒监测暴露于香芹酚引起的膜完整性变化。为了找到香芹酚的最佳抑制浓度,我们使用了预测微生物学方法。该最佳浓度随细菌生理状态而变化,因为非生长培养物比生长培养物对香芹酚的作用更不敏感。此外,我们首次指出,在群体水平上,未处理培养物的外排介导抗性在非生长阶段也比生长阶段更强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64a4/9905641/7ad8971b1bab/fmicb-14-1073798-g001.jpg

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