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A simple cage-autonomous method for the maintenance of the barrier status of germ-free mice during experimentation

机译:一种在实验过程中保持无菌小鼠屏障状态的简单笼养自主方法

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The use of germ-free (GF) isolators for microbiome-related research is exponentially increasing, yet limited by its cost, isolator size and potential for trans-contamination. As such, current isolator technology is highly limiting to researchers engaged in short period experiments involving multiple mouse strains and employing a variety of mono-inoculated microorganisms. In this study, we evaluate the use of positive pressure Isocages as a solution for short period studies (days to 2-3 weeks) of experimentation with GF mice at multiple simultaneous conditions. We demonstrate that this new Isocage technology is cost-effective and room-sparing, and enables maintenance of multiple simultaneous groups of GF mice. Using this technology, transferring GF mice from isolators to Isocage racks for experimentation, where they are kept under fully germ-free conditions, enables parallel inoculation with different bacterial strains and simultaneous experimentation with multiple research conditions. Altogether, the new GF Isocage technology enables the expansion of GF capabilities in a safe and cost-effective manner that can facilitate the growth, elaboration and flexibility of microbiome research
机译:无菌(GF)隔离器在微生物组相关研究中的使用呈指数增长,但受到其成本,隔离器尺寸和潜在转染的限制。因此,当前的隔离技术高度限制了从事短期实验的研究人员的研究,这些实验涉及多种小鼠品系并采用多种单接种微生物。在这项研究中,我们评估了在多个同时条件下用GF小鼠进行短期研究(从几天到2-3周)作为正液Isocages溶液的用途。我们证明,这项新的Isocage技术具有成本效益和可保留空间,并能够同时维护多个GF小鼠组。使用这项技术,可以将GF小鼠从隔离器转移到Isocage架子上进行实验,并在完全无菌的条件下进行饲养,从而可以对不同细菌菌株进行平行接种,并可以在多种研究条件下同时进行实验。总而言之,新的GF Isocage技术能够以安全且经济高效的方式扩展GF功能,从而促进微生物组研究的发展,完善和灵活性。

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