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Low-cost Small-scale Decontamination of Laboratory Equipment by Using Chlorine Dioxide Gas

机译:使用二氧化氯气体的低成本小规模的实验室设备消毒

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摘要

A significant concern in laboratory animal medicine is contamination due to pathogen outbreaks and how to adequately decontaminate small equipment. Many factors play a role in the selection of the decontamination method including cost, efficacy, personnel time and safety. Chlorine dioxide (ClO ) gas is an effective method, but decontamination often requires a ClO gas generator with a specialized air-tight exposure chamber. Although this method works well for large-scale decontamination, the use of a gas generator may be impractical and too costly for smaller-scale decontamination. The goal of this study was to create and validate an effective, small-scale decontamination method that uses ClO gas and which is an affordable, efficient, safe, and reproducible. First, we identified a product that generates ClO gas after the combination of 2 dry reagents. To find an affordable exposure chamber, we evaluated the ability of 4 household totes with gasket-seal lid systems to retain ClO gas and relative humidity (RH). The efficacy of decontamination was validated by concurrently using 2 different biologic indicators (BI), ( ) and ( .). All household totes evaluated held sufficient gas and RH for a 15-h cycle, providing adequate contact time to inactivate both BI evaluated. Our results suggest that a total exposure dose of 71 ± 42 ppm-h of ClO gas over 15 h at 90% or greater RH is adequate to inactivate both and There was no statistical significance between the 2 BI as indicators for decontamination; 65 of 230 (28.3%) and 75 of 230 (32.6%) G.s spore strips were positive for growth ( = 0.36). In conclusion, we successfully combined a variety of low-cost materials to establish an effective, small-scale method to decontaminate laboratory equipment. Depending on the size of the tote and whether BI are used, the cost of our method is roughly 1% that of large-scale ClO gas generators used with specialized air-tight exposure chambers.
机译:实验动物医学中的一个重要问题是病原体爆发引起的污染以及如何对小型设备进行充分消毒。选择去污方法的因素很多,包括成本,功效,人员时间和安全性。二氧化氯(ClO)气体是一种有效的方法,但净化工作通常需要具有专用气密暴露室的ClO气体发生器。尽管此方法对于大规模净化非常有效,但对于较小规模的净化,使用气体发生器可能不切实际且成本太高。这项研究的目的是创建和验证一种有效的,小规模的使用ClO气体的净化方法,该方法可负担得起,高效,安全且可重现。首先,我们确定了两种干燥试剂结合后会产生ClO气体的产物。为了找到负担得起的暴露室,我们评估了带有垫片密封盖系统的4种家用手提袋保持ClO气体和相对湿度(RH)的能力。同时使用两种不同的生物指标(BI),()和(。)验证了净化的功效。被评估的所有家用手提袋在15小时的循环中均具有足够的气体和相对湿度,提供了足够的接触时间以灭活两个被评估的BI。我们的结果表明,在90%或更高的相对湿度下15小时内,ClO气体的总暴露剂量为71±42 ppm-h,足以使两者均失活,并且作为消毒指标的2 BI之间没有统计学意义; 230个中的65个(28.3%)和230个中的75个(32.6%)G.s孢子带对生长呈阳性(= 0.36)。总之,我们成功地结合了多种低成本材料,建立了一种有效的小规模方法来净化实验室设备。根据手提袋的大小以及是否使用BI,我们方法的成本大约是使用带有专用气密暴露室的大型ClO气体发生器的1%。

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