Innate immune system signaling and CD11b + CD11c + CD103 + cell migration to the brain underlie changes in mouse behavior after microbial colonization
作者:Vivek M. Philip, Narjis Kraïmi, Hailong Zhang, Jun Lü, Giada De Palma, Chiko Shimbori, Kathy D. McCoy, Siegfried Hapfelmeier, Olivier P. Schären, Andrew J. Macpherson, Fernando G. Chirdo, Michael G. Surette, Elena F. Verdú, Fang Liu, Stephen M. Collins, Přemysl Berčík · 发表于:bioRxiv (Cold Spring Harbor Laboratory) · 年份:2024 · DOI:10.1101/2024.07.03.600853 · 被引用次数:2 · 研究领域:Gut microbiota and health、Neuroendocrine regulation and behavior、Infant Health and Development
Abstract Background and Aims Accumulating evidence suggests the microbiota is a key factor in disorders of gut-brain interaction (DGBI), by affecting host immune and neural systems. However, the underlying mechanisms remain elusive due to their complexity and clinical heterogeneity of patients with DGBIs. We aimed to identify neuroimmune pathways that are critical in microbiota-gut-brain communication during de novo gut colonization. Methods We employed a combination of gnotobiotic and state-of-the-art microbial tools, behavioral analysis, immune and pharmacological approaches. Germ-free wild type, MyD88 −/− Ticam1 −/− and SCID mice were studied before and after colonization with specific pathogen-free microbiota, Altered Schaedler Flora, E. coli or S. typhimurium (permanent or transient colonizers). TLR agonists and antagonists, CCR7 antagonist or immunomodulators were used to study immune pathways. We assessed brain c-Fos, brain-derived neurotrophic factor, and dendritic and glial cells by immunofluorescence, expression of neuroimmune genes by NanoString and performed brain proteomics. Results Bacterial monocolonization, conventionalization or administration of microbial products to germ-free mice altered mouse behavior similarly, acting through Toll-like receptor or nucleotide-binding oligomerization domain signaling. The process required CD11b + CD11c + CD103 + cell activation and migration into the brain. The change in behavior did not require the continued presence of b...