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等离子体生成的一氧化氮水:一种有前途的策略,可用于对抗环境污染物微球菌中的细菌休眠(VBNC 状态)。

Plasma-generated nitric oxide water: A promising strategy to combat bacterial dormancy (VBNC state) in environmental contaminant Micrococcus luteus.

机构信息

Department of Electrical and Biological Physics/Plasma Bioscience Research Center, Kwangwoon University, Seoul 01897, South Korea.

Department of Biotechnology, College of Engineering, The University of Suwon, Hwaseong 18323, South Korea.

出版信息

J Hazard Mater. 2024 Jan 5;461:132634. doi: 10.1016/j.jhazmat.2023.132634. Epub 2023 Sep 27.

Abstract

The viable but non-culturable (VBNC) is an inactive state, and certain bacteria can enter under adverse conditions. The VBNC state challenges the environment, food safety, and public health since VBNCs may resuscitate and pose a risk to human health. The aim of this study was to investigate the effect of plasma-generated nitric oxide water (PG-NOW) on airborne contaminant Micrococcus luteus (M. luteus) and examine its potential to induce the VBNC state. The essential conditions for bacteria to enter VBNC state are low metabolic activity and rare or no culturable counts. The results indicated that PG-NOW effectively eliminates M. luteus, and the remaining bacteria are in culturable condition. Moreover, the conventional cultured-based method combined with a propidium iodide monoazide quantitative PCR (PMAxx-qPCR) showed no significant VBNC induction and moderate culturable counts. Results from the qPCR revealed that gene levels in PG-NOW treated bacteria related to resuscitation-promoting factors, amino acid biosynthesis, and fatty acid metabolism were notably upregulated. PG-NOW inactivated M. luteus showed negligible VBNC formation and alleviated infection ability in lung cells. This study provides new insights into the potential use of PG-NOW reactive species for the prevention and control of the VBNC state of M. luteus.

摘要

活的但非可培养状态(VBNC)是一种非活性状态,某些细菌在不利条件下可以进入这种状态。VBNC 状态对环境、食品安全和公共卫生构成挑战,因为 VBNCs 可能复苏并对人类健康构成威胁。本研究旨在研究等离子体生成的一氧化氮水(PG-NOW)对空气传播污染物藤黄微球菌(M. luteus)的影响,并研究其诱导 VBNC 状态的潜力。细菌进入 VBNC 状态的基本条件是低代谢活性和罕见或无可培养计数。结果表明,PG-NOW 可有效消除 M. luteus,而其余细菌处于可培养状态。此外,传统的基于培养的方法结合碘化丙啶单叠氮定量 PCR(PMAxx-qPCR)显示没有明显的 VBNC 诱导和适度的可培养计数。qPCR 的结果表明,PG-NOW 处理细菌中与复苏促进因子、氨基酸生物合成和脂肪酸代谢相关的基因水平显著上调。PG-NOW 灭活的 M. luteus 表现出极少量的 VBNC 形成,并减轻了对肺细胞的感染能力。本研究为利用 PG-NOW 反应性物质预防和控制 M. luteus 的 VBNC 状态提供了新的见解。

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