微生物群
隔离器
畜牧业
生物
微生物学
计算机科学
生物信息学
生态学
工程类
农业
电子工程
作者
Anastasia F Muino,Nicole Compo,Bo M Everett,Dominique Abrahams,Margi Baldwin,T James,Stefanie Wanner,Megan Perkins,Christopher J Parr,Norman D Wiltshire,Emily L Miedel,Robert W. Engelman
出处
期刊:Journal of The American Association for Laboratory Animal Science
[American Association for Laboratory Animal Science]
日期:2023-09-01
卷期号:62 (5): 395-408
标识
DOI:10.30802/aalas-jaalas-23-000019
摘要
Here, we combined the use of 2 technologies that have not previously been used together-a positively pressurized isolator IVC (IsoIVC-P) and a modular isolator with integrated vaporized hydrogen peroxide (VHP) technology???to develop highly tractable and scalable methods to support long-term maintenance of germfree mouse colonies and the concurrent use of germfree and gnotobiotic mice in the same room. This space-efficient system increases the practicality of microbiome studies. Specifically, the exterior surfaces of microbially similar IsoIVC-P were sterilized by using VHP prior to opening the cages and handling the mice therein. This space-efficient system increases the feasibility of microbiome studies. After over 74 wk of experimentation and handling equivalent to more than 1,379,693 germfree mouse-days, we determined that the method and practices we developed have a weekly performance metric of 0.0001 sterility breaks per husbandry unit; this rate is comparable to the isolator 'gold standard.' These data were achieved without adverse incidents while maintaining an Altered Schaedler Flora colony and multiple gnotobiotic studies involving fecal microbial transplants in the same room. Our novel IsoIVC-P???VHP workstation housing system thus improves microbiome research efficiency, eliminates hazards, and reduces risks associated with traditional methods.
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