首页> 外文期刊>Journal of applied microbiology >Atmospheric pressure, nonthermal plasma inactivation of MS2 bacteriophage: effect of oxygen concentration on virucidal activity
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Atmospheric pressure, nonthermal plasma inactivation of MS2 bacteriophage: effect of oxygen concentration on virucidal activity

机译:大气压力,MS2噬菌体的非热等离子体灭活:氧浓度对杀病毒活性的影响

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AimsThe main aim of this study was to determine the virucidal inactivation efficacy of an in-house-designed atmospheric pressure, nonthermal plasma jet operated at varying helium/oxygen feed gas concentrations against MS2 bacteriophage, widely employed as a convenient surrogate for human norovirus. Methods and ResultsThe effect of variation of percentage oxygen concentration in the helium (He) carrier gas was studied and found to positively correlate with MS2 inactivation rate, indicating a role for reactive oxygen species (ROS) in viral inactivation. The inactivation rate constant increased with increasing oxygen concentrations up to 075% O-2. 3 log(10) (999%) reductions in MS2 viability were achieved after 3min of exposure to the plasma source operated in a helium/oxygen (9925%:075%) gas mixture, with >7 log(10) reduction after 9min exposure. ConclusionsAtmospheric pressure, nonthermal plasmas may have utility in the rapid disinfection of virally contaminated surfaces for infection control applications. Significance and Impact of StudyThe atmospheric pressure, nonthermal plasma jet employed in this study exhibits rapid virucidal activity against a norovirus surrogate virus, the MS2 bacteriophage, which is superior to previously published inactivation rates for chemical disinfectants.
机译:目的本研究的主要目的是确定内部设计的大气压,非热等离子体射流的杀灭病毒灭活效果,该射流在不同的氦气/氧气进料气浓度下对抗MS2噬菌体,广泛用作人类诺如病毒的替代品。方法和结果研究了氦气(He)载气中氧气浓度百分比变化的影响,发现其与MS2灭活率呈正相关,表明活性氧(ROS)在病毒灭活中的作用。灭活速率常数随着氧浓度的增加而增加,直至0 75%O-2。暴露于在氦气/氧气中运行的血浆源3分钟后(99 25%:0),MS2活力降低了3 log(10)(99 9%) 75%)气体混合物,暴露9分钟后降低> 7 log(10)。结论大气压,非热等离子体可用于病毒感染表面的快速消毒,以用于感染控制应用。研究的意义和影响本研究中使用的大气压,非热等离子体射流对诺如病毒替代病毒MS2噬菌体具有快速杀灭病毒的活性,优于先前发表的化学消毒剂的灭活率。

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