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Advances in Immunology|January 2, 2009
Thymic microenvironments for T-cell repertoire formationTakeshi Nitta, Shigeo Murata, Tomoo Ueno, et al.
International Immunology|May 3, 2018
Mice lacking all of the Skint family genesTomoya Narita, Takeshi Nitta, Sachiko Nitta, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 7, 2009
CCR7-mediated migration of developing thymocytes to the medulla is essential for negative selection to tissue-restricted antigensTakeshi Nitta, Sachiko Nitta, Yu Lei, et al.
European Journal of Immunology|April 7, 2011
Ontogeny of thymic cortical epithelial cells expressing the thymoproteasome subunit β5tAdiratna Mat Ripen, Takeshi Nitta, Shigeo Murata, et al.
Nature Immunology|August 23, 2022
ETS1 governs pathological tissue-remodeling programs in disease-associated fibroblastsMinglu Yan, Noriko Komatsu, Ryunosuke Muro, et al.
Seminars in Immunology|June 1, 2010
Role of thymic cortex-specific self-peptides in positive selection of T cellsYousuke Takahama, Takeshi Nitta, Adiratna Mat Ripen, et al.
Plos One|January 7, 2010
In situ patrolling of regulatory T cells is essential for protecting autoimmune exocrinopathyNaozumi Ishimaru, Takeshi Nitta, Rieko Arakaki, et al.
International Journal of Molecular Sciences|April 30, 2021
Cell Lysis Directed by SulA in Response to DNA Damage in Escherichia coliMasayuki Murata, Keiko Nakamura, Tomoyuki Kosaka, et al.
Nature Communications|March 12, 2016
IL-17-producing γδ T cells enhance bone regenerationTakehito Ono, Kazuo Okamoto, Tomoki Nakashima, et al.
The American Journal of Pathology|November 10, 2011
CCR7 with S1P1 signaling through AP-1 for migration of Foxp3+ regulatory T-cells controls autoimmune exocrinopathyNaozumi Ishimaru, Akiko Yamada, Takeshi Nitta, et al.
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