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In Vitro and In Vivo Analysis of Hydrogen Peroxide-Enhanced Plasma-Induced Effluent for Infection and Contamination Mitigation at Research and Medical Facilities

机译:体外和体内过氧化氢增强血浆诱导的污染污水对研究和医疗设施的污染缓解

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The growing prevalence of multidrug-resistant bacteria poses a unique challenge to animal and human health. The threat of nosocomial infections in hospitals and infectious outbreaks in vivaria through fomites requires novel technological solutions. We describe the use of a compact device capable of producing a disinfecting air stream based on electrical plasma-induced chemistry and hydrogen peroxide additives. We show that this device can deactivate strains of the bacteria Staphylococcus aureus and Pseudomonas aeruginosa in vitro on a potential fomite in medical and research facilities. Deactivation takes less than a minute and does not require high temperatures. Exposure of human epidermal keratinocytes (HEKa) and human dermal fibroblasts (HDFa) in isolated cultures show that human skin cells are much less affected by the treatment than bacteria. In addition, an in vivo acute exposure of shaved CD-I mice and subsequent histology shows no adverse effects on the skin as compared to alcohol-based hand sanitizers and Silvadene. The results suggest that the technology is suitable as a general disinfection procedure for heat-sensitive inanimate objects in a short exposure time. In addition, it is not a danger to live tissue when exposed acutely, suggesting potential use as a regular disinfection procedure.
机译:耐多药细菌的日益流行对动物和人类健康构成了独特的挑战。医院内医院感染的威胁,以及通过叶螨在维瓦里亚暴发的感染,需要新的技术解决方案。我们描述了基于电等离子体诱导化学和过氧化氢添加剂,能够产生消毒气流的紧凑型设备的使用。我们表明,该设备可以在体外灭活金黄色葡萄球菌和铜绿假单胞菌菌株,使其在医疗和研究设施中成为潜在的病原体。失活时间不到一分钟,不需要高温。在分离培养的人表皮角质形成细胞(HEKa)和人真皮成纤维细胞(HDFa)中暴露表明,与细菌相比,人类皮肤细胞受治疗的影响要小得多。此外,与基于酒精的洗手液和Silvadene相比,剃光的CD-I小鼠体内急性暴露和随后的组织学检查显示,对皮肤没有不良影响。结果表明,该技术适用于在短时间内对热敏性无生命物体进行常规消毒。此外,急性暴露时对活组织没有危险,建议作为常规消毒程序使用。

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