Devan Shakthi Rk, Vasu Suresh, Mallikarjuna Yogesha, Ponraj Ramkumar, Kamath Gireesh, Poosala Suresh
Syngene International, AAALAC International, Bangalore, India;, Email:
Syngene International, AAALAC International, Bangalore, India.
J Am Assoc Lab Anim Sci. 2018 Mar 1;57(2):161-172.
Biodecontamination is important for eliminating pathogens at research animal facilities, thereby preventing contamination within barrier systems. We enhanced our facility's standard biodecontamination method to replace the traditional foggers, and the new system was used effectively after creating bypass ducts in HVAC units so that individual rooms could be isolated. The entire system was controlled by inhouse-developed supervisory control and data-acquisition software that supported multiple cycles of decontamination by equipment, which had different decontamination capacities, operated in parallel, and used different agents, including H2O2 vapor and ClO2 gas. The process was validated according to facility mapping, and effectiveness was assessed by using biologic (Geobacillus stearothermophilus) and chemical indicator strips, which were positioned before decontamination, and by sampling contact plates after the completion of each cycle. The results of biologic indicators showed 6-log reduction in microbial counts after successful decontamination cycles for both agents and found to be compatible with clean-room panels including commonly used materials in vivarium such as racks, cages, trolleys, cage changing stations, biosafety cabinets, refrigerators and other equipment in both procedure and animal rooms. In conclusion, the automated process enabled users to perform effective decontamination through multiple cycles with realtime documentation and provided additional capability to deal with potential outbreaks. Enabling software integration of automation improved quality-control systems in our vivarium.
生物去污对于消除实验动物设施中的病原体很重要,从而防止屏障系统内的污染。我们改进了设施的标准生物去污方法以取代传统的喷雾器,在暖通空调机组中设置旁通管道以便能隔离各个房间后,新系统得到了有效使用。整个系统由内部开发的监控和数据采集软件控制,该软件支持由不同去污能力的设备并行运行并使用包括过氧化氢蒸汽和二氧化氯气体在内的不同试剂进行的多个去污循环。该过程根据设施布局进行了验证,并通过使用去污前放置的生物(嗜热栖热放线菌)和化学指示条以及每个循环完成后对接触板进行采样来评估有效性。生物指示剂的结果显示,两种试剂在成功的去污循环后微生物数量均减少了6个对数,并且发现在程序和动物房内与洁净室面板兼容,包括实验动物饲养室内常用的材料,如架子、笼子、手推车、换笼站、生物安全柜、冰箱和其他设备。总之,自动化过程使用户能够通过多个循环进行有效的去污,并提供实时记录,还具备应对潜在疫情爆发的额外能力。实现自动化的软件集成改进了我们实验动物饲养室的质量控制系统。