Tearle Jason, MacRae Gary, Andrews Spencer, Clarke Anthony, Stuart Jamie, Tremblay Gilles
The Pirbright Institute, Pirbright, Surrey, UK.
Merrick & Company, Kanata, Ontario, Canada.
Appl Biosaf. 2020 Mar 1;25(1):41-47. doi: 10.1177/1535676019895084.
The effectiveness of formaldehyde as a fumigant in laboratories, for equipment, and for containment barrier decontamination applications was assessed, in particular the ability to reproduce biological inactivation (6-log reduction) of commercially available rapid biological indicators in representative operational scenarios and their relative sensitivity to other biological and chemical indicators.
The primary objective of this study was to describe observations and results of formaldehyde fumigation efficacy in high-containment laboratories.
Biological indicators placed throughout laboratory spaces, including ventilation ductwork at distances up to 15 meters, inside pieces of equipment and in lengths of pipe, were mostly negative, demonstrating the ability of formaldehyde to reach the interior and external surfaces tested. Dwell times as short as 10 minutes were shown to be sufficient in barrier decontamination equipment for the fumigation of personal computers. Furthermore, a pipework bore:length ratio of 1:1500 was proven too great a challenge. Indicators placed after extracting HEPA filters in microbiological safety cabinets (MBSCs) were also successfully fumigated (at room temperature) relying solely on diffusion and in the cabinet workspace at 10°C to 12°C. In addition, pressures of up to 900 Pa were experienced in low-leakage laboratory spaces during fumigation.
Formaldehyde fumigation was shown to be effective in a variety of scenarios representing operational activities thereby giving process assurance.
评估了甲醛作为熏蒸剂在实验室、设备及隔离屏障去污应用中的有效性,特别是在代表性操作场景下使市售快速生物指示剂实现生物灭活(6个对数级减少)的能力及其对其他生物和化学指示剂的相对敏感性。
本研究的主要目的是描述高等级生物安全实验室中甲醛熏蒸效果的观察结果。
放置在整个实验室空间的生物指示剂,包括距离达15米的通风管道、设备内部和管道段,大多呈阴性,表明甲醛能够到达所测试的内表面和外表面。对于个人计算机熏蒸,在屏障去污设备中,短至10分钟的滞留时间已被证明足够。此外,管道内径与长度之比为1:1500被证明是一个太大的挑战。放置在微生物安全柜(MBSC)中高效空气过滤器(HEPA)抽出后位置的指示剂,仅依靠扩散且在10°C至12°C的柜内工作空间也成功实现了熏蒸(在室温下)。此外,熏蒸期间低泄漏实验室空间内的压力高达900帕斯卡。
甲醛熏蒸在代表操作活动的各种场景中均显示出有效性,从而为该过程提供了保证。