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Parameters Affecting the Antimicrobial Properties of Cold Atmospheric Plasma Jet

机译:影响冷常压等离子体射流抗菌性能的参数

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摘要

Using the Taguchi method to narrow experimental parameters, the antimicrobial efficiency of a cold atmospheric plasma jet (CAPJ) treatment was investigated. An L9 array with four parameters of CAPJ treatments, including the application voltage, CAPJ-sample distance, argon (Ar) gas flow rate, and CAPJ treatment time, were applied to examine the antimicrobial activity against ( ). CAPJ treatment time was found to be the most influential parameter in its antimicrobial ability by evaluation of signal to noise ratios and analysis of variance. 100% bactericidal activity was achieved under the optimal bactericidal activity parameters including the application voltage of 8.5 kV, CAPJ-sample distance of 10 mm, Ar gas flow rate of 500 sccm, and CAPJ treatment time of 300 s, which confirms the efficacy of the Taguchi method in this design. In terms of the mechanism of CAPJ’s antimicrobial ability, the intensity of hydroxyl radical produced by CAPJ positively correlated to its antimicrobial efficiency. The CAPJ antimicrobial efficiency was further evaluated by both DNA double-strand breaks analysis and scanning electron microscopy examination of CAPJ treated bacteria. CAPJ destroyed the cell wall of and further damaged its DNA structure, thus leading to successful killing of bacteria. This study suggests that optimal conditions of CPAJ can provide effective antimicrobial activity and may be grounds for a novel approach for eradicating bacterial infections.
机译:使用田口方法来缩小实验参数,研究了冷大气等离子体射流(CAPJ)处理的抗菌效率。使用带有四个参数的CAPJ处理的L9阵列,包括施加电压,CAPJ采样距离,氩气(Ar)气体流量和CAPJ处理时间,以检查对()的抗菌活性。通过评估信噪比和方差分析,CAPJ处理时间是其抗菌能力中最有影响力的参数。在最佳杀菌活性参数下,包括施加电压8.5 kV,CAPJ样品距离为10 mm,Ar气体流速为500 sccm和CAPJ处理时间为300 s,达到了100%的杀菌活性,这证实了该产品的功效。田口法在本设计中。就CAPJ的抗菌能力机理而言,CAPJ产生的羟基自由基强度与其抗菌效率呈正相关。通过对CAPJ处理的细菌进行DNA双链断裂分析和扫描电子显微镜检查,进一步评估了CAPJ的抗菌效率。 CAPJ破坏了细胞壁并进一步破坏了其DNA结构,从而成功杀死了细菌。这项研究表明,CPAJ的最佳条件可以提供有效的抗菌活性,并且可能为根除细菌感染的新方法奠定了基础。

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