Evaluation of a Novel Battery-Operated Tumbler Device for Use in the Detection of Mouse Pathogens for Rodent Health Monitoring.

Harmaneek K Sidhu, Cheryl L Perkins, Ken S Henderson, Brianne M Hibl, Simonne S Nouer, Elizabeth A Tolley, David J Hamilton
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Abstract

The search for alternatives to live animal sentinels in rodent health monitoring programs is fundamental to the 3Rs (Reduction, Replacement, and Refinement) of animal research. We evaluated the efficacy of a novel battery-operated tumbler device that rotates soiled bedding in direct contact with sample media against the use of exhaust sample media and soiled bedding sentinel (SBS) mice. Four rodent racks were used, each with 3 test cages: a cage with a tumbler device that rotated for 10min twice a week (TUM10), a cage with a tumbler device that rotated for 60min twice a week (TUM60), and a cage housing 2 female Crl:CD1(ICR) mice. Every 2 wk, each test cage received soiled bedding collected from all cages on each respective rack. In addition to soiled bedding, the tumbler device contained various sample collection media: a contact Reemay filter (3mo-cRF) that remained in the tumbler for the duration of the study, a contact Reemay filter (1mo-cRF) that was replaced monthly, adhesive swabs (AS) that were added at every biweekly cage change, and an exhaust Reemay filter located at the exhaust outlet of the cage. All analyses were performed by direct PCR for both sample media in the animal-free methods, and fecal pellet, body swab, and oral swabs were collected from sentinel mice. Out of 16 total pathogens detected, assessment of 1mo-Crf from both TUM10 and TUM60 cages detected 84% and 79% of pathogens, respectively, while SBS samples detected only 47% of pathogens. AS in TUM60 and TUM10 cages detected the fewest pathogens (24% and 13%, respectively). These results indicate that the novel tumbler device is an effective and reliable tool for rodent health monitoring programs and a suitable replacement for live animal sentinels. In this study, 1mo-cRF in TUM10 cages detected the highest number of pathogens.

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评估用于啮齿动物健康监测的小鼠病原体检测的新型电池操作滚揉器装置。
在啮齿动物健康监测计划中寻找活体动物哨兵的替代品是动物研究 3R(减少、替代和改进)的基础。我们评估了一种新型电池驱动翻滚装置的功效,该装置可旋转与样本培养基直接接触的污秽垫料,与使用排气样本培养基和污秽垫料哨兵(SBS)小鼠相比,效果更佳。使用了四个啮齿动物架,每个架上有 3 个测试笼:一个笼子装有每周旋转两次、每次 10 分钟的翻滚装置(TUM10),一个笼子装有每周旋转两次、每次 60 分钟的翻滚装置(TUM60),还有一个笼子饲养 2 只雌性 Crl:CD1(ICR)小鼠。每隔 2 周,每个测试笼都会收到从各自架子上的所有笼子中收集的脏垫料。除了脏垫料外,滚揉装置还包含各种样本收集介质:在研究期间一直留在滚揉装置中的接触式 Reemay 过滤器(3 个月-cRF)、每月更换一次的接触式 Reemay 过滤器(1 个月-cRF)、每两周更换一次笼子时添加的粘胶棉签 (AS),以及位于笼子排气口的排气 Reemay 过滤器。在无动物方法中,所有分析都是通过两种样本介质的直接 PCR 进行的,并从哨兵小鼠身上收集粪便颗粒、体拭子和口腔拭子。在检测到的全部 16 种病原体中,对 TUM10 和 TUM60 笼中的 1 个月-cRF 进行的评估分别检测到 84% 和 79% 的病原体,而 SBS 样品仅检测到 47% 的病原体。TUM60 和 TUM10 笼中的 AS 检测到的病原体最少(分别为 24% 和 13%)。这些结果表明,新型不倒翁装置是啮齿动物健康监测计划的一种有效、可靠的工具,是活体动物哨兵的合适替代品。在这项研究中,TUM10笼子中的1个月cRF检测到的病原体数量最多。
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