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利用独立通风笼具系统和生物气泡室创建用于微生物组动物研究的实验饲养环境。

Creation of an experimental rearing environment for microbiome animal research using an individually ventilated cage system and bioBUBBLE enclosure.

机构信息

Central Institute for Experimental Animals, 3-25-12 Tonomachi, Kawasaki-ku, Kawasaki, Kanagawa 210-0821, Japan.

NOMURA JIMUSHO, Inc., Hibiya Central Bldg, 1-2-9 Nishi Shimbashi, Minato-ku, Tokyo 105-0003, Japan.

出版信息

Exp Anim. 2021 May 13;70(2):177-184. doi: 10.1538/expanim.20-0129. Epub 2020 Nov 25.

Abstract

To avoid microbial contamination risk, vinyl film isolators are generally used in animal microbiome experiments involving germ-free (GF) mice and/or gnotobiotic (GB) mice. However, it can take several months to gain expertise in operating the isolator competently. Furthermore, sterilization and sterility testing, which are essential for isolator preparation, can take more than 20 days. Hence, we built an experimental rearing environment that combines an individual ventilation cage system and a bioBUBBLE clean room enclosure to easily set up an experimental animal microbiome environment for animal facilities. In this work, a three-step evaluation was conducted. First, we examined whether GF mice can be maintained in this rearing environment without bacterial contamination. Next, we examined whether GF and GB mice can be maintained without cross-contamination in one individual ventilation cage rack. Finally, we tested whether GF mice can be maintained in a biological safety cabinet controlled by negative pressure. In our series of experiments, no microbial contamination occurred over more than 3 months. These results indicated that our rearing system that combines the individual ventilation cage and bioBUBBLE systems can be used not only for experiments with GF mice but also for Biosafety Level 2 experiments that handle bacteria. Our system can mitigate various disadvantages of using vinyl film isolators. In conclusion, we established an experimental method with improved working time and efficiency compared with those of the previous vinyl isolator method.

摘要

为了避免微生物污染的风险,在涉及无菌(GF)小鼠和/或无菌(GB)小鼠的动物微生物组实验中,通常使用乙烯基薄膜隔离器。然而,要熟练操作隔离器需要几个月的时间。此外,为了准备隔离器,消毒和无菌检测需要超过 20 天的时间。因此,我们构建了一个实验饲养环境,将个体通风笼系统和生物 BUBBLE 洁净室外壳相结合,以便轻松为动物设施建立实验动物微生物组环境。在这项工作中,进行了三步评估。首先,我们检查了在没有细菌污染的情况下,GF 小鼠是否可以在这种饲养环境中生存。其次,我们检查了在一个个体通风笼架中,GF 和 GB 小鼠是否可以在没有交叉污染的情况下生存。最后,我们测试了在负压控制的生物安全柜中,GF 小鼠是否可以生存。在我们的一系列实验中,超过 3 个月没有发生微生物污染。这些结果表明,我们将个体通风笼和生物 BUBBLE 系统相结合的饲养系统不仅可以用于 GF 小鼠的实验,还可以用于处理细菌的生物安全级别 2 实验。我们的系统可以减轻使用乙烯基薄膜隔离器的各种缺点。总之,与之前的乙烯基隔离器方法相比,我们建立了一种工作时间和效率都得到改善的实验方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9b7/8150247/1bd9fece1868/expanim-70-177-g001.jpg

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