2022 - 2025 Role of membrane vesicles produced by the intestinal microbiota in intestinal homeostasis.
2021 - 2024 腸管感染型ボツリヌス症を制御する腸内因子のin vivoを中心とした解析
2020 - 2023 乳児ボツリヌス症の包括的理解に向けた基礎的・臨床的研究
2020 - 2023 ボツリヌス菌が産生する膜小胞による宿主病原体相互作用の解明
2020 - 2022 Analysis of the interaction between host and Clostridium botulinum derived membrane vesicles.
2020 - 2021 ボツリヌス菌が産生する膜小胞の病態生理学的意義の解明
2019 - 2021 Molecular mechanism of antigen transcytosis by M cells mediated by a novel identified M-cell specific molecule.
2016 - 2019 Research on the molecular mechanism of transcytosis in M cells
2012 - 2013 小胞輸送制御因子SMAP1及びSMAP2による協調的な作用機構の解析
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Papers (11):
Takuhiro Matsumura, Mayu Kitamura, Sho Amatsu, Aki Yamaguchi, Nobuhide Kobayashi, Masahiro Yutani, Yukako Fujinaga. Neutralization mechanism of human monoclonal antibodies against type B botulinum neurotoxin. Microbiology and Immunology. 2024
Nobuhide Kobayashi, Kimihiro Abe, Sachiyo Akagi, Mayu Kitamura, Yoshitake Shiraishi, Aki Yamaguchi, Masahiro Yutani, Sho Amatsu, Takuhiro Matsumura, Nobuhiko Nomura, et al. Membrane Vesicles Derived From Clostridium botulinum and Related Clostridial Species Induce Innate Immune Responses via MyD88/TRIF Signaling in vitro. Frontiers in Microbiology. 2022. 13. 720308-720308
Shunsuke Kimura, Yutaka Nakamura, Nobuhide Kobayashi, Katsuyuki Shiroguchi, Eiryo Kawakami, Mami Mutoh, Hiromi Takahashi-Iwanaga, Takahiro Yamada, Meri Hisamoto, Midori Nakamura, et al. Osteoprotegerin-dependent M cell self-regulation balances gut infection and immunity. Nature communications. 2020. 11. 1. 234-234
Nobuhide Kobayashi, Koji Hase. Roles of various antigen sampling mechanism on mucosal surface. Clinical immunology & allergology. 2018. 69. 5. 482-488
Ishihara Narumi, Kobayashi Nobuhide, Hase Koji. INTESTINAL M CELLS CONTRIBUTE TO THE MAINTENANCE OF MUCOSAL BARRIER FUNCTIONS AND IMMUNE HOMEOSTASIS. Japanese Journal of Allergology. 2018. 67. 3. 171-178
Lectures and oral presentations (16):
Membrane vesicles derived from Clostridium botulinum induce inflammatory responses and disrupt intestinal barrier.
(2024)
Identification of the intestinal bacteria that protect against Clostridium botulinum infection
(2024)