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在使用两种不同的独立通风笼架的无特定病原体小鼠设施中,评估废气灰尘聚合酶链反应作为脏垫料哨兵监测补充方法的效果。

Evaluation of exhaust air dust polymerase chain reaction as a supplement method for soiled bedding sentinel monitoring in specific pathogen free mouse facility using two different individually ventilated cage racks.

作者信息

Kim Hwan, Jeon Chan-Mi, Jang Yoon-Cheol, Goo Jun-Seo, Park Jae-Hak

机构信息

Laboratory Animal Resource Facility, Institution for Basic Science, Korea.

Department of Laboratory Animal Medicine, College of Veterinary Medicine, Seoul National University, Korea.

出版信息

Lab Anim. 2023 Feb;57(1):40-49. doi: 10.1177/00236772221123184. Epub 2022 Oct 6.

Abstract

Health monitoring is essential for ensuring animal health and reliable research results. Each animal facility should establish adequate health monitoring methods, and microbiological quality control should be implemented through regular health surveillance. Recently, specific pathogen free (SPF) mice have been housed in individually ventilated cage (IVC) racks in the majority of mouse facilities globally, and health monitoring is implemented using a soiled bedding sentinel (SBS). Even though SBS monitoring is a standard method, it has a limitation in that some pathogens are not sufficiently transmitted to the sentinel housed in the IVC. The exhaust air dust polymerase chain reaction (EAD PCR) method has been reported to be a reliable complementary method to SBS monitoring based on research findings. In Korea, health monitoring programs using EAD PCR have not yet been applied to laboratory animal facilities. The microbiological status of mouse colonies housed in the two IVC racks was compared using SBS and EAD PCR monitoring in our SPF mouse facility. Except for spp. and , the detection of 16 pathogens did not differ between the two methods. In the detection of spp., EAD PCR was found to be more sensitive than SBS. spp. were not found by SBS, whereas four positive samples were detected by either SBS or EAD PCR test. According to our findings, EAD PCR can be used as a supplement to SBS monitoring. Moreover, EAD PCR can reduce the number of animals used, making it a 3R (Replacement, Reduction, Refinement)-consistent method.

摘要

健康监测对于确保动物健康和可靠的研究结果至关重要。每个动物设施都应建立适当的健康监测方法,并通过定期健康监测实施微生物质量控制。最近,全球大多数小鼠设施中,无特定病原体(SPF)小鼠都饲养在独立通风笼(IVC)架中,并使用脏垫料哨兵(SBS)进行健康监测。尽管SBS监测是一种标准方法,但它有一个局限性,即一些病原体不能充分传播到IVC中的哨兵小鼠。根据研究结果,废气灰尘聚合酶链反应(EAD PCR)方法已被报道是SBS监测的一种可靠补充方法。在韩国,使用EAD PCR的健康监测计划尚未应用于实验动物设施。在我们的SPF小鼠设施中,使用SBS和EAD PCR监测比较了两个IVC架中饲养的小鼠群体的微生物状况。除了 spp. 和 外,两种方法对16种病原体的检测没有差异。在 spp. 的检测中,发现EAD PCR比SBS更敏感。SBS未检测到 spp.,而通过SBS或EAD PCR检测发现了四个 阳性样本。根据我们的研究结果,EAD PCR可作为SBS监测的补充。此外,EAD PCR可以减少动物的使用数量,使其成为一种符合3R(替代、减少、优化)原则的方法。

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