Kim Hwan, Bang Junpil, Baek Seung Ho, Park Jae-Hak
Laboratory Animal Research Center, Sungkyunkwan University School of Medicine, 2066 Seobu-ro, Jangan-gu, Suwon, Korea.
Department of Laboratory Animal Medicine, College of Veterinary Medicine, Seoul National University, Gwangak-ro 1, Gwanak-gu, Seoul 08826, Korea.
Exp Anim. 2022 Feb 9;71(1):28-35. doi: 10.1538/expanim.21-0026. Epub 2021 Aug 30.
Pathogens can affect physiological and immunological reactions in immunocompromised animals and genetically engineered mice. Specifically, murine norovirus (MNV), Helicobacter, and intestinal protozoa are prevalent in rodent laboratory facilities worldwide. In this study, microbiological test results of the soiled bedding of sentinel mice showed the prevalence of MNV (50.9%, 28/55), Helicobacter hepaticus (29.1%, 16/55), Trichomonas spp. (14.5%, 8/55), and Entamoeba spp. (32.7%, 18/55). No single infections were detected as all cases were confirmed to have complex infections with two or four pathogens. In previous studies, the success rate of the cross-fostering method was not perfect; therefore, in this study, the entire mouse strain of the SPF rodent facility was rederived using embryo transfer. For up to three years, we confirmed that the results were negative with regular health surveillance tests. Embryo transfer was, thus, determined to be an effective method for the rederivation of specific pathogen free (SPF) barrier mouse facilities. This is the report for the effectiveness of embryo transfer as an example of successful microbiological clean-up of a mouse colony with multiple infections in an entire SPF mouse facility and embryo transfer may be useful for rederiving.
病原体可影响免疫功能低下的动物和基因工程小鼠的生理和免疫反应。具体而言,鼠诺如病毒(MNV)、幽门螺杆菌和肠道原生动物在全球啮齿动物实验室设施中普遍存在。在本研究中,哨兵小鼠脏垫料的微生物检测结果显示,MNV的感染率为50.9%(28/55),肝螺杆菌为29.1%(16/55),毛滴虫属为14.5%(8/55),内阿米巴属为32.7%(18/55)。由于所有病例均被证实为两种或四种病原体的复合感染,未检测到单一感染。在先前的研究中,代乳法的成功率并不理想;因此,在本研究中,使用胚胎移植对无特定病原体(SPF)啮齿动物设施的整个小鼠品系进行了重新培育。长达三年的时间里,我们通过定期的健康监测测试确认结果为阴性。因此,胚胎移植被确定为一种重新培育无特定病原体(SPF)屏障小鼠设施的有效方法。这是一份关于胚胎移植有效性的报告,作为整个SPF小鼠设施中成功清理多重感染小鼠群体的微生物学实例,胚胎移植可能对重新培育有用。