Technical and Anatomical Considerations for Reproducible Inactivation of Large Animal Carcasses by Steam Sterilization.

IF 0.5 Q4 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH Applied Biosafety Pub Date : 2020-04-29 DOI:10.1177/1535676020919637
J. Schinköthe, Benjamin Bartram-Sitzius, J. Teifke, U. Pfitzner, S. Reiche
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Abstract

Introduction: The complete inactivation of infectious tissues of large animal carcasses is one of the most challenging tasks in high-containment facilities. Steam sterilization is a method frequently in use to achieve biological inactivation of liquid and solid waste. Objective: This study aims to highlight parameters most effective in creating reproducible cycles for steam sterilization of pig and calf carcasses. Methods: Two pigs or 1 calf were sterilized by running a liquid cycle (n = 3) at 121°C for at least 120 minutes in a pass-through autoclave. To assess the physical and biological parameters, temperature data loggers and biological indicators (BIs) with spores of Geobacillus stearothermophilus (ATCC 7953) were placed at defined positions within animal carcasses. After completion of each cycle, data loggers were analyzed and BIs were incubated for 7 days at 60°C. Results: Initial testing with an undissected pig carcass resulted in suboptimal temperatures at the tissue level with growth on 1 BI. After modifications of the used stainless-steel boxes and by placing the reference probe of the autoclave in the animal carcass, reproducible cycles could be created. A complete inactivation of BIs and a temperature profile of >121°C for at least 20 minutes could be achieved in almost all probed tissues. Conclusion: Only minor modifications in carcass preparation and the used sterilization equipment resulted in effective and reproducible cycles to inactivate large animal carcasses by using a steam autoclave.
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大型动物尸体蒸汽灭菌可重复灭活的技术和解剖学考虑。
引言:在高密闭设施中,大型动物尸体的传染性组织的完全灭活是最具挑战性的任务之一。蒸汽灭菌是一种常用的方法,用于实现液体和固体废物的生物灭活。目的:本研究旨在强调最有效的参数,以建立可重复循环的猪和小牛尸体蒸汽灭菌。方法:2头猪或1头小牛在121°C的高压灭菌器中进行液体循环(n = 3)至少120分钟的灭菌。为了评估物理和生物学参数,将温度数据记录仪和带有嗜脂嗜热地杆菌孢子(ATCC 7953)的生物指示剂(BIs)放置在动物尸体的指定位置。每个周期完成后,对数据记录仪进行分析,并将BIs在60℃下孵育7天。结果:在未解剖的猪胴体上进行的初步测试表明,在1 BI上生长的组织水平上温度不理想。在对使用过的不锈钢箱进行改造后,通过将高压灭菌器的参考探针放置在动物胴体中,可以创建可重复的循环。在几乎所有被探测的组织中,可以实现BIs的完全失活和>121℃至少20分钟的温度分布。结论:仅对屠体制备和使用的灭菌设备进行少量修改,就可以使用蒸汽高压灭菌器实现有效且可重复的大型动物屠体灭活循环。
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来源期刊
Applied Biosafety
Applied Biosafety Environmental Science-Management, Monitoring, Policy and Law
CiteScore
2.50
自引率
13.30%
发文量
27
期刊介绍: Applied Biosafety (APB), sponsored by ABSA International, is a peer-reviewed, scientific journal committed to promoting global biosafety awareness and best practices to prevent occupational exposures and adverse environmental impacts related to biohazardous releases. APB provides a forum for exchanging sound biosafety and biosecurity initiatives by publishing original articles, review articles, letters to the editors, commentaries, and brief reviews. APB informs scientists, safety professionals, policymakers, engineers, architects, and governmental organizations. The journal is committed to publishing on topics significant in well-resourced countries as well as information relevant to underserved regions, engaging and cultivating the development of biosafety professionals globally.
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