Takashi Yahata
Tokai University
74 Papers
1K Citations
Takashi Yahata is an academic researcher from Tokai University. The author has contributed to research in topics: Haematopoiesis & Stem cell. The author has an hindex of 27, co-authored 67 publications. Previous affiliations of Takashi Yahata include Tokyo University of Science & Central Institute for Experimental Animals.
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Papers
The natural killer T (NKT) cell ligand _-galactosylceramide′ demonstrates its immunopotentiating effect by inducing′ intreleukin (IL)-12 production by dendritic cells and IL-12′ receptor expression on NKT cells.
Hidemitsu Kitamura,Kenji Iwakabe,Takashi Yahata,Shin-Ichiro Nishimura,Akio Ohta,Yasushi Ohmi,Marimo Sato,Kazuyoshi Takeda,Kyoko Okumura,L. Van Kaer,Tetsu Kawano,Masaru Taniguchi,Takashi Nishimura +12 more
- 01 Jan 1999
Abstract: The natural killer T (NKT) cell ligand α-galactosylceramide (α-GalCer) exhibits profound antitumor activities in vivo that resemble interleukin (IL)-12–mediated antitumor activities. Because of these similarities between the activities of α-GalCer and IL-12, we investigated the involvement of IL-12 in the activation of NKT cells by α-GalCer. We first established, using purified subsets of various lymphocyte populations, that α-GalCer selectively activates NKT cells for production of interferon (IFN)-γ. Production of IFN-γ by NKT cells in response to α-GalCer required IL-12 produced by dendritic cells (DCs) and direct contact between NKT cells and DCs through CD40/CD40 ligand interactions. Moreover, α-GalCer strongly induced the expression of IL-12 receptor on NKT cells from wild-type but not CD1−/− or Vα14−/− mice. This effect of α-GalCer required the production of IFN-γ by NKT cells and production of IL-12 by DCs. Finally, we showed that treatment of mice with suboptimal doses of α-GalCer together with suboptimal doses of IL-12 resulted in strongly enhanced natural killing activity and IFN-γ production. Collectively, these findings indicate an important role for DC-produced IL-12 in the activation of NKT cells by α-GalCer and suggest that NKT cells may be able to condition DCs for subsequent immune responses. Our results also suggest a novel approach for immunotherapy of cancer.
591
Distinct Role of Antigen-Specific T Helper Type 1 (Th1) and Th2 Cells in Tumor Eradication in Vivo
Takashi Nishimura,Kenji Iwakabe,Masashi Sekimoto,Yasushi Ohmi,Takashi Yahata,Minoru Nakui,Takehito Sato,Sonoko Habu,Hiroyuki Tashiro,Marimo Sato,Akio Ohta +10 more
TL;DR: It is demonstrated for the first time the distinct role of antigen-specific Th1 and Th2 cells during eradication of established tumors in vivo: the leukocyte function-associated antigen (LFA)-1–dependent cell–cell adhesion step was essential for Th1 cell therapy, but not for Th2 cell therapy.
Delta-like 4 is indispensable in thymic environment specific for T cell development
Katsuto Hozumi,Carolina Mailhos,Naoko Negishi,Ken-ichi Hirano,Takashi Yahata,Kiyoshi Ando,Saulius Zuklys,Georg A. Holländer,David T. Shima,Sonoko Habu +9 more
TL;DR: The results indicate that the thymus-specific environment for determining T cell fate indispensably requires Dll4 expression to induce Notch signaling in theThymic immigrant cells.
A highly sensitive strategy for SCID-repopulating cell assay by direct injection of primitive human hematopoietic cells into NOD/SCID mice bone marrow.
Takashi Yahata,Kiyoshi Ando,Tadayuki Sato,Hiroko Miyatake,Yoshihiko Nakamura,Yukari Muguruma,Shunichi Kato,Tomomitsu Hotta +7 more
TL;DR: The results indicate that the iBM injection strategy is a more sensitive and direct way to measure the capability of human SRCs and is useful to investigate the interaction of HSCs and marrow environment in vivo.
202
Functional human T lymphocyte development from cord blood CD34+ cells in nonobese diabetic/Shi-scid, IL-2 receptor gamma null mice.
Takashi Yahata,Kiyoshi Ando,Yoshihiko Nakamura,Yoshito Ueyama,Yoshito Ueyama,Kazuo Shimamura,Norikazu Tamaoki,Shunichi Kato,Tomomitsu Hotta +8 more
TL;DR: It is shown that functional human T lymphocytes can be reconstituted from CD34+ cells in NOD/SCID/γcnull mice, and this newly developed mouse model is expected to become a useful tool for the analysis of human T cell differentiation and immune response, and an animal model for studying T lymphotropic viral infections, such as HIV.