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Role of Absolute Humidity in the Inactivation of Influenza Viruses on Stainless Steel Surfaces at Elevated Temperatures

机译:绝对湿度在高温下不锈钢表面上的流感病毒灭活中的作用

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摘要

Influenza virus has been found to persist in the environment for hours to days, allowing for secondary transmission of influenza via inanimate objects known as fomites. We evaluated the efficacy of heat and moisture for the decontamination of surfaces for the purpose of preventing of the spread of influenza. Aqueous suspensions of influenza A virus were deposited onto stainless steel coupons, allowed to dry under ambient conditions, and exposed to temperatures of 55°C, 60°C, or 65°C and relative humidity (RH) of 25%, 50%, or 75% for up to 1 h. Quantitative virus assays were performed on the solution used to wash the viruses from these coupons, and results were compared with the solution used to wash coupons treated similarly but left under ambient conditions. Inactivation of influenza virus on surfaces increased with increasing temperature, RH, and exposure time. Reductions of greater than 5 logs of influenza virus on surfaces were achieved at temperatures of 60 and 65°C, exposure times of 30 and 60 min, and RH of 50 and 75%. Our data also suggest that absolute humidity is a better predictor of surface inactivation than RH and allows the prediction of survival using two parameters rather than three. Modest amounts of heat and adequate moisture can provide effective disinfection of surfaces while not harming surfaces, electrical systems, or mechanical components, leaving no harmful residues behind after treatment and requiring a relatively short amount of time.
机译:已发现流感病毒会在环境中持续数小时至数天,从而可以通过称为无烟无生命的物体进行流感的二次传播。为了防止流感的传播,我们评估了热量和水分对表面净化的功效。将甲型流感病毒的水悬浮液沉积在不锈钢试样片上,使其在环境条件下干燥,然后暴露于55°C,60°C或65°C的温度以及25%,50%的相对湿度(RH)或75%长达1小时。对用于从这些优惠券中洗涤病毒的溶液进行定量病毒测定,并将结果与​​用于洗涤相似处理但留在环境条件下的优惠券的溶液进行比较。随着温度,相对湿度和暴露时间的增加,流感病毒在表面上的失活也会增加。在60和65°C的温度,30和60分钟的暴露时间以及50%和75%的相对湿度下,可以减少表面上超过5对数的流感病毒。我们的数据还表明,绝对湿度比RH更好地预测了表面失活,并且允许使用两个参数而不是三个参数来预测存活率。适度的热量和足够的水分可以提供有效的表面消毒效果,同时又不损害表面,电气系统或机械组件,在处理后不会留下有害残留物,并且需要相对较短的时间。

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