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An overview of research using the one atmosphere uniform glow discharge plasma (OAUGDP) for sterilization of surfaces and materials

机译:使用一种大气压均匀辉光放电等离子体(OAUGDP)对表面和材料进行灭菌的研究概述

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The medical, food processing, and heating, ventilating, and air conditioning industries are searching for improved pasteurization, disinfection, and sterilization technologies. Candidate techniques must deal with and overcome such problems as thermal sensitivity and destruction by heat, formation of toxic by-products, costs, and inefficiency in performance. We report the results of a plasma source, the One Atmosphere Uniform Glow Discharge Plasma (OAUGDP), which operates at atmospheric pressure in air and produces antimicrobial active species at room temperature, OAUGDP exposures have reduced log numbers of Gram negative and Gram positive bacteria, bacterial endospores, yeast, and bacterial viruses on a variety of surfaces. The nature of the surface influenced the degree of lethality, with microorganisms on polypropylene being most sensitive, followed by glass, and cells embedded in agar. Experimental results showed at least a 5 log/sub 10/ CFU reduction in bacteria within a range of 50-90 s of exposure. After 10-25 s of exposure, macromolecular leakage and bacterial fragmentation were observed. Vulnerability of cell membranes to reactive oxygen species (ROC) is hypothesized. Results from several novel OAUGDP configurations are presented, including a remote exposure reactor (RER) which uses transported active species to sterilize material located more than 20 cm from the plasma generation site, and a second planar electrode configuration developed for air filter sterilization. Applications of these technologies to the healthcare industry, the food industry, and decontaminating surfaces compromised by biological warfare agents are discussed.
机译:医疗,食品加工以及供热,通风和空调行业正在寻求改进的巴氏灭菌,消毒和灭菌技术。候选技术必须处理和克服诸如热敏感性和热破坏,有毒副产物形成,成本和性能低下等问题。我们报告了一种等离子体源的结果,即一种均匀的均匀辉光放电等离子体(OAUGDP),它在大气中于大气中工作,并在室温下产生抗菌活性物质。OAUGDP暴露减少了革兰氏阴性和革兰氏阳性细菌的对数,各种表面上的细菌内生孢子,酵母和细菌病毒。表面的性质影响了杀伤力,聚丙烯上的微生物最敏感,其次是玻璃和琼脂中嵌入的细胞。实验结果表明,在50-90 s的暴露范围内,细菌减少至少5 log / sub 10 / CFU。暴露10-25 s后,观察到大分子泄漏和细菌破碎。假设细胞膜对活性氧(ROC)的脆弱性。提出了几种新颖的OAUGDP配置的结果,包括使用传输的活性物质对距等离子体发生部位20 cm以上的材料进行灭菌的远程暴露反应器(RER),以及为空气过滤器灭菌开发的第二种平面电极配置。讨论了这些技术在医疗保健行业,食品行业的应用以及被生物战剂破坏的净化表面的应用。

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