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Updated: Jan 13, 2026

Application of a Mouse Ligated Peyer’s Patch Intestinal Loop Assay to Evaluate Bacterial Uptake by M cells
Published on: December 17, 2011
M cell-dependent commensal uptake confers encephalitogenic phenotypes on γδT17 cells in Peyer's patches
Seiga Komiyama1,2, Yotaro Kodaira1, Rae Maeda3
1Division of Biochemistry, Faculty of Pharmacy and Graduate School of Pharmaceutical Sciences, Keio University, Tokyo 105-8512, Japan.
Abstract:
Interleukin-17-producing γδT cells (γδT17 cells) play a dual role in immune regulation, serving as both protectors in various tissues and orchestrators of inflammatory responses in autoimmune diseases, including experimental autoimmune encephalomyelitis (EAE), a rodent model of multiple sclerosis. However, the ontology and repertoires of encephalitogenic γδT17 cells remain unclear. In this study, we demonstrate that the encephalitogenicity of γδT17 cells is conferred through microfold cell (M cell)-dependent uptake of commensal bacteria in Peyer's patches. Specifically, CXCR6hiVγ6+Vδ1+ invariant γδT17 cells are activated by specific commensal bacteria such as Lactobacillus spp., which stimulate TCR of CXCR6hiVγ6+Vδ1+ invariant γδT17 cells. During the early stages of EAE, γδT17 cells infiltrate the central nervous system (CNS), initiating a type 17 inflammatory response. Our findings illustrate that Peyer's patch M cells serve as a critical bridge, linking the pathological association between commensal bacteria and the onset of CNS inflammation.
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