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Biofilms on environmental surfaces: Evaluation of the disinfection efficacy of a novel steam vapor system

机译:环境表面上的生物膜:新型蒸汽系统的消毒效果评估

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摘要

Background: Environmental surfaces in health care settings are often contaminated by microorganisms, and biofilms can develop on the surfaces in these settings. Steam vapor technology is of potential use for disinfection of biofilms on the environmental surfaces. Methods: We tested the disinfection efficacy of a thermal-accelerated nanocrystal sanitation (TANCS)-equipped steam vapor technology against biofilms through disinfecting biofilms developed by 4 bacterial strains - Escherichia coli, Acinetobacter baumannii, Pseudomonas aeruginosa, and Staphylococcus aureus - on an identical test surface (ie, polycarbonate) and biofilms developed by E coli on 4 different test surfaces: polycarbonate, rubber, stainless steel, and ceramics. Results: Our data show that a 3-second steam treatment rapidly killed each biofilm tested (>99.95 % killing efficiency). For biofilms developed on different surfaces, 3-second steam treatment achieved 99.95% killing of E coli biofilms developed on different surfaces. Compared with chemical disinfection, steam treatment for <1 second a similar level of biofilm disinfection as provided by incubation with 10-ppm sodium hypochlorite (bleach) for 10-20 minutes of contact time. Conclusions: Our data suggest that the TANCS-equipped steam vapor disinfection is an emerging and potentially useful technology for disinfecting biofilms on environmental surfaces.
机译:背景:卫生保健环境中的环境表面经常被微生物污染,在这些环境中,生物膜会在其表面形成。蒸汽蒸气技术在消毒环境表面的生物膜方面具有潜在的用途。方法:我们通过对由大肠杆菌,鲍曼不动杆菌,铜绿假单胞菌和金黄色葡萄球菌等4种细菌产生的生物膜进行消毒,测试了配备热促进纳米晶体卫生(TANCS)的蒸汽蒸气技术对生物膜的消毒效果。表面(即聚碳酸酯)和大肠杆菌在4种不同测试表面上形成的生物膜:聚碳酸酯,橡胶,不锈钢和陶瓷。结果:我们的数据表明,3秒的蒸汽处理迅速杀死了每个测试的生物膜(> 99.95%的杀死效率)。对于在不同表面上形成的生物膜,3秒蒸汽处理可杀死在不同表面上形成的大肠杆菌生物膜99.95%。与化学消毒相比,蒸汽处理<1秒的生物膜消毒水平与通过与10 ppm次氯酸钠(漂白剂)孵育10-20分钟的接触时间所提供的水平相似。结论:我们的数据表明,配备TANCS的蒸汽蒸气消毒技术是一种新兴的且潜在有用的技术,可用于消毒环境表面上的生物膜。

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