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微生物暴露史的小鼠模型比较揭示了微生物多样性和疫苗接种反应的差异。

Comparison of mouse models of microbial experience reveals differences in microbial diversity and response to vaccination.

机构信息

Department of Microbiology and Immunology, University of Minnesota, Minneapolis, Minnesota, USA.

Faculty of Veterinary Medicine, Norwegian University of Life Sciences, Ås, Norway.

出版信息

mSphere. 2024 Feb 28;9(2):e0065423. doi: 10.1128/msphere.00654-23. Epub 2024 Jan 29.

Abstract

Specific pathogen-free (SPF) laboratory mice dominate preclinical studies for immunology and vaccinology. Unfortunately, SPF mice often fail to accurately model human responses to vaccination and other immunological perturbations. Several groups have taken different approaches to introduce additional microbial experience to SPF mice to better model human immune experience. How these different models compare is unknown. Here, we directly compare three models: housing SPF mice in a microbe-rich barn-like environment (feralizing), adding wild-caught mice to the barn-like environment (fer-cohoused), or cohousing SPF mice with pet store mice in a barrier facility (pet-cohoused); the two latter representing different murine sources of microbial transmission. Pet-cohousing mice resulted in the greatest microbial exposure. Feralizing alone did not result in the transmission of any pathogens tested, while fer-cohousing resulted in the transmission of several picornaviruses. Murine astrovirus 2, the most common pathogen from pet store mice, was absent from the other two model systems. Previously, we had shown that pet-cohousing reduced the antibody response to vaccination compared with SPF mice. This was not recapitulated in either the feralized or fer-cohoused mice. These data indicate that not all dirty mouse models are equivalent in either microbial experience or immune responses to vaccination. These disparities suggest that more cross model comparisons are needed but also represent opportunities to uncover microbe combination-specific phenotypes and develop more refined experimental models. Given the breadth of microbes encountered by humans across the globe, multiple model systems may be needed to accurately recapitulate heterogenous human immune responses.IMPORTANCEAnimal models are an essential tool for evaluating clinical interventions. Unfortunately, they can often fail to accurately predict outcomes when translated into humans. This failure is due in part to a lack of natural infections experienced by most laboratory animals. To improve the mouse model, we and others have exposed laboratory mice to microbes they would experience in the wild. Although these models have been growing in popularity, these different models have not been specifically compared. Here, we directly compare how three different models of microbial experience impact the immune response to influenza vaccination. We find that these models are not the same and that the degree of microbial exposure affects the magnitude of the response to vaccination. These results provide an opportunity for the field to continue comparing and contrasting these systems to determine which models best recapitulate different aspects of the human condition.

摘要

无特定病原体(SPF)实验小鼠在免疫学和疫苗学的临床前研究中占据主导地位。不幸的是,SPF 小鼠通常无法准确模拟人类对疫苗接种和其他免疫干扰的反应。有几个研究小组采用了不同的方法,向 SPF 小鼠引入更多的微生物体验,以更好地模拟人类的免疫体验。这些不同模型的比较情况尚不清楚。在这里,我们直接比较了三种模型:将 SPF 小鼠饲养在微生物丰富的谷仓样环境中(驯化),将野生捕获的小鼠添加到谷仓样环境中(共同饲养),或在屏障设施中共同饲养 SPF 小鼠和宠物店小鼠(宠物共同饲养);后两种模型代表了不同的微生物传播来源。与 SPF 小鼠相比,宠物共同饲养导致了最大的微生物暴露。单独驯化不会导致任何测试病原体的传播,而共同饲养则导致几种小核糖核酸病毒的传播。宠物商店小鼠最常见的病原体鼠星状病毒 2 不存在于其他两种模型系统中。此前,我们曾表明,与 SPF 小鼠相比,宠物共同饲养会降低疫苗接种的抗体反应。这在驯化或共同饲养的小鼠中均未得到重现。这些数据表明,并非所有肮脏的小鼠模型在微生物体验或疫苗接种的免疫反应方面都相同。这些差异表明,需要进行更多的跨模型比较,但也为发现微生物组合特异性表型和开发更精细的实验模型提供了机会。鉴于人类在全球范围内接触的微生物种类繁多,可能需要多种模型系统来准确重现异质的人类免疫反应。

重要性动物模型是评估临床干预措施的重要工具。不幸的是,当将它们转化为人类时,它们往往无法准确预测结果。这种失败部分归因于大多数实验动物缺乏自然感染。为了改进小鼠模型,我们和其他研究人员已经使实验室小鼠接触到它们在野外会遇到的微生物。尽管这些模型越来越受欢迎,但这些不同的模型尚未进行具体比较。在这里,我们直接比较了三种不同的微生物体验模型如何影响流感疫苗接种的免疫反应。我们发现这些模型并不相同,微生物暴露的程度会影响疫苗接种的反应程度。这些结果为该领域提供了一个机会,可以继续比较和对比这些系统,以确定哪些模型能够最好地再现人类状况的不同方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6dc3/10900878/9dd87279071f/msphere.00654-23.f001.jpg

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