首页> 外文期刊>Journal of Zhejiang University. Science, B >Decontamination of Bacillus subtilis var. niger spores on selected surfaces by chlorine dioxide gas
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Decontamination of Bacillus subtilis var. niger spores on selected surfaces by chlorine dioxide gas

机译:枯草芽孢杆菌的净化。尼日尔孢子在所选表面上用二氧化氯气

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Objective: Chlorine dioxide (CD) gas has been used as a fumigant in the disinfection of biosafety laboratories. In this study, some experiments were conducted to assess the inactivation of spores inoculated on six materials [stainless steel (SS), painted steel (PS), polyvinyl chlorid (PVC), polyurethane (PU), glass (GS), and cotton cloth (CC)] by CD gas. The main aims of the study were to determine the sporicidal efficacy of CD gas and the effect of prehumidification before decontamination on sporicidal efficacy. Methods: Material coupons (1.2 cm diameter of SS, PS, and PU; 1.0 cm×1.0 cm for PVC, GS, and CC) were contaminated with 10 μl of Bacillus subtilis var. niger (ATCC 9372) spore suspension in mixed organic burden and then dried in a biosafety cabinet for 12 h. The spores were recovered by soaking the coupons in 5 ml of extraction liquid for 1 h and then vortexing the liquid for 1 min. Results: The log reductions in spore numbers on inoculated test materials exposed to CD gas [0.080% (volume ratio, v/v) for 3 h] were in the range of from 1.80 to 6.64. Statistically significant differences were found in decontamination efficacies on test material coupons of SS, PS, PU, and CC between with and without a 1-h prehumidification treatment. With the extraction method, there were no statistically significant differences in the recovery ratios between the porous and non-porous materials. Conclusions: The results reported from this study could provide information for developing decontamination technology based on CD gas for targeting surface microbial contamination.
机译:目的:二氧化氯(CD)气体已被用作生物安全实验室消毒中的熏蒸剂。在这项研究中,进行了一些实验以评估接种六种材料[不锈钢(SS),涂料钢(PS),聚乙烯氯(PVC),聚氨酯(PU),玻璃(GS)和棉布的孢子的灭活(CC)]通过CD气体。该研究的主要目的是确定CD气体的刺激性疗效和净化前的效果在去污之前对刺激性疗效进行净化。方法:对PVC,GS和CC的1.2厘米直径的SS,PS和PU; 1.0cm×1.0cm)被10μL芽孢杆菌菌污染。尼日尔(ATCC 9372)孢子悬浮液混合有机负荷,然后在生物安全柜中干燥12小时。通过将5ml萃取液中的优惠券浸泡1小时,然后涡旋1分钟来回收孢子1分钟。结果:暴露于CD气体的接种试验材料上的孢子数量[0.080%(体积比,v / v)的孢子数为1.80至6.64。在统计学上存在显着的差异,在SS,PS,PU和CC之间的试验材料券和含有1-H杂化处理之间的测试材料券的净化效率。通过提取方法,多孔和无孔材料之间的回收率没有统计学显着的差异。结论:本研究报告的结果可以为基于CD气体靶向表面微生物污染的CD气来提供用于开发去污技术的信息。

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