免疫
生物
免疫系统
微生物群
免疫学
疾病
获得性免疫系统
病菌
病毒
克隆(Java方法)
病毒学
医学
基因
生物信息学
遗传学
病理
作者
Daphne Kolland,Miriam Kuhlmann,Gustavo Pereira de Almeida,Amelie Köhler,Anela Arifovic,Alexandra von Strempel,Mohsen Pourjam,Silvia Bolsega,Christine Wurmser,Katja Steiger,Marijana Basic,Klaus Neuhaus,Carsten B. Schmidt‐Weber,Bärbel Stecher,Dietmar Zehn,Caspar Ohnmacht
标识
DOI:10.1038/s41467-025-59073-x
摘要
Abstract Anti-viral immunity can vary tremendously from individual to individual but mechanistic understanding is still scarce. Here, we show that a defined, low complex bacterial community (OMM 12 ) but not the general absence of microbes in germ-free mice leads to a more potent immune response compared to the microbiome of specific-pathogen-free (SPF) mice after a systemic viral infection with LCMV Clone-13. Consequently, gnotobiotic mice colonized with OMM 12 have more severe LCMV-induced disease pathology but also enhance viral clearance in the intestinal tract. Mechanistically, single-cell RNA sequencing analysis of adoptively transferred virus-specific T helper cells and endogenous T helper cells in the intestinal tract reveal a stronger pro-inflammatory Th1 profile and a more vigorous expansion in OMM 12 than SPF mice. Altogether, our work highlights the causative function of the intestinal microbiome for shaping adaptive anti-viral immunity with implications for vaccination strategies and anti-cancer treatment regimens.
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