Keio University · Biochemistry, Genetics and Molecular Biology
Professor Yohei Mikami's research lab focuses on the immunological mechanisms underlying inflammatory bowel diseases (IBD), with a particular emphasis on the neuro-immune interactions, innate lymphoid cells (ILCs), and T cell plasticity in gut inflammation. The lab investigates the cholinergic anti-inflammatory pathway mediated by the vagus nerve, the role of ILC3 subsets in barrier immunity and inflammation, and the dynamic regulation of Th1 and Th17 cells at inflammatory sites. Using translational mouse models and multi-omics approaches, the lab aims to uncover novel therapeutic targets for IBD and related immune disorders.
Figures are computed from collected data and may differ slightly.
5-ASA is used as first-line therapy for ulcerative colitis. Optimization of 5-ASA may be beneficial for patient outcomes and healthcare systems. Acute 5-ASA intolerance syndrome is characterized by diarrhea, fever, and abdominal pain. Periodic renal function monitoring is recommended for patients receiving 5-ASA.
The pathophysiology of inflammatory bowel diseases (IBDs) involves immunological, genetic and environmental factors. Through its ability to sense environmental stimuli, the autonomic nervous system plays a key role in the development and persistence of IBDs. The vagus nerve (VN), which contains sensory and motor neurons, travels throughout the body to innervate the gut and other visceral organs in the thoracic and abdominopelvic cavities. Recent studies show that the VN has anti-inflammatory eff
Innate lymphoid cells (ILCs) producing IL-22 and/or IL-17, designated as ILC3, comprise a heterogeneous subset of cells involved in regulation of gut barrier homeostasis and inflammation. Exogenous environmental cues in conjunction with regulated expression of endogenous factors are key determinants of plasticity of ILC3 toward the type 1 fate. Herein, by using mouse models and transcriptomic approaches, we defined at the molecular level, initial events driving ILC3 expressing natural cytotoxici
Th17 cells and Th1 cells coordinate to play a critical role in the formation of inflammatory bowel diseases. To examine how Th17 and Th1 cells are regulated at inflammatory sites, we used Th1-dominant CD4(+)CD45RB(high) T cell-transferred RAG-2(-/-) and Th1/Th17-mixed IL-10(-/-) mice. Interestingly, not only did colitic RAG-2(-/-) mice that were parabiosed with WT mice show significant amelioration of colitis, but amelioration of disease was also observed in those parabiosed with colitic IL-10(-
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