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在饲养免疫受损动物的无特定病原体高屏障实验小鼠设施中检测并根除一种寄生虫感染

Detection and Eradication of a Infestation in Specific Pathogen-free High-barrier Laboratory Mouse Facility Housing Immunocompromised Animals.

作者信息

Le Sommer Samantha, Sun Yan, Legler Levi, Nelson Katherine, Coon Laura, Bohler Damian, Kontaridis Maria I

机构信息

Department of Biomedical Research and Translational Medicine, Masonic Medical Research Institute, Utica, New York.

Department of Medicine, Division of Cardiology, Beth Israel Deaconess Medical Center, Boston, Massachusetts; and.

出版信息

J Am Assoc Lab Anim Sci. 2024 Jun 22;63(5):521-9. doi: 10.30802/AALAS-JAALAS-23-000092.

Abstract

mites are a common ectoparasite in nonlaboratory (mouse) populations. While infrequently reported in laboratory research mice, the prevalence is thought to be as high as 35% of all colonies. Here, we discuss an outbreak of within an SPF high-barrier vivarium housing laboratory mice first identified through commercial sentinel-free PCR testing. Consequently, in-house PCR-mediated identification of individually infected cages was conducted, and a successful method for eradication of secondary reemergent infection was generated via recurrent testing and empirical 12-wk treatment with 3 mg/kg moxidectin and 13 mg/kg imidacloprid. While we were unable to determine the source of our primary outbreak, the secondary outbreak was traced to nongenetically modified C57B6/J immunocompetent mice, which were capable of harboring subclinical infection below our PCR threshold. Our eventual successful eradication of confirmed, first, that in-house PCR detection is a cost-effective means of monitoring an outbreak; second, that treatment with 3 mg/kg moxidectin and 13 mg/kg imidacloprid does kill mites in laboratory mice; and third, that treatment of only PCR-positive mice is an insufficient way to control an outbreak. Taken together, our methodological approach for infestations such as suggests it is possible to eradicate them but that it requires a thorough, systematic, and aggressive treatment regimen. Moreover, we recommend that all cages derived from infected animals be treated as positive, regardless of PCR positivity, to prevent recurrent and/or persistent infections within an animal colony.

摘要

螨是实验小鼠以外的其他(小鼠)群体中常见的体表寄生虫。虽然在实验室研究小鼠中螨感染的报道较少,但据认为在所有小鼠群体中的感染率高达35%。在此,我们讨论了在一个饲养实验小鼠的无特定病原体(SPF)高屏障动物饲养室内螨爆发的情况,该情况最初是通过商业无哨兵PCR检测发现的。因此,我们通过内部PCR介导的方法对单个感染笼进行了鉴定,并通过反复检测以及用3mg/kg莫西菌素和13mg/kg吡虫啉进行为期12周的经验性治疗,成功研发出一种根除继发性再发感染的方法。虽然我们无法确定初次爆发的源头,但二次爆发追溯到了非基因改造的C57B6/J免疫活性小鼠,这些小鼠能够携带低于我们PCR检测阈值的亚临床感染。我们最终成功根除螨的情况,首先证实了内部PCR检测是监测螨爆发的一种经济有效的手段;其次,用3mg/kg莫西菌素和13mg/kg吡虫啉治疗确实能杀死实验小鼠体内的螨;第三,仅对PCR检测呈阳性的小鼠进行治疗不足以控制螨的爆发。综上所述,我们针对螨感染等情况所采用的方法表明,根除螨是有可能的,但需要一套全面、系统且积极的治疗方案。此外,我们建议,所有来自感染动物的笼子,无论PCR检测是否呈阳性,都应被视为阳性笼,以防止动物群体内再次发生和/或持续感染。

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