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Table representation of search results timeline featuring number of search results per year.

Year Number of Results
1965 2
1971 2
1975 6
1976 7
1977 4
1978 3
1979 5
1980 22
1981 35
1982 58
1983 53
1984 52
1985 60
1986 74
1987 85
1988 85
1989 111
1990 127
1991 129
1992 135
1993 134
1994 141
1995 159
1996 145
1997 140
1998 166
1999 163
2000 167
2001 190
2002 244
2003 239
2004 254
2005 280
2006 308
2007 331
2008 362
2009 387
2010 384
2011 432
2012 403
2013 443
2014 416
2015 417
2016 293
2017 246
2018 314
2019 296
2020 297
2021 331
2022 306
2023 247
2024 110

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8,950 results

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Page 1
Whole-genome landscape of adult T-cell leukemia/lymphoma.
Kogure Y, Kameda T, Koya J, Yoshimitsu M, Nosaka K, Yasunaga JI, Imaizumi Y, Watanabe M, Saito Y, Ito Y, McClure MB, Tabata M, Shingaki S, Yoshifuji K, Chiba K, Okada A, Kakiuchi N, Nannya Y, Kamiunten A, Tahira Y, Akizuki K, Sekine M, Shide K, Hidaka T, Kubuki Y, Kitanaka A, Hidaka M, Nakano N, Utsunomiya A, Sica RA, Acuna-Villaorduna A, Janakiram M, Shah U, Ramos JC, Shibata T, Takeuchi K, Takaori-Kondo A, Miyazaki Y, Matsuoka M, Ishitsuka K, Shiraishi Y, Miyano S, Ogawa S, Ye BH, Shimoda K, Kataoka K. Kogure Y, et al. Among authors: shibata t. Blood. 2022 Feb 17;139(7):967-982. doi: 10.1182/blood.2021013568. Blood. 2022. PMID: 34695199 Free PMC article.
Adult T-cell leukemia/lymphoma (ATL) is an aggressive neoplasm immunophenotypically resembling regulatory T cells, associated with human T-cell leukemia virus type-1. ...Our findings not only help to improve diagnostic and therapeutic strategies in ATL, but a …
Adult T-cell leukemia/lymphoma (ATL) is an aggressive neoplasm immunophenotypically resembling regulatory T cells, associated …
Integrated molecular analysis of adult T cell leukemia/lymphoma.
Kataoka K, Nagata Y, Kitanaka A, Shiraishi Y, Shimamura T, Yasunaga J, Totoki Y, Chiba K, Sato-Otsubo A, Nagae G, Ishii R, Muto S, Kotani S, Watatani Y, Takeda J, Sanada M, Tanaka H, Suzuki H, Sato Y, Shiozawa Y, Yoshizato T, Yoshida K, Makishima H, Iwanaga M, Ma G, Nosaka K, Hishizawa M, Itonaga H, Imaizumi Y, Munakata W, Ogasawara H, Sato T, Sasai K, Muramoto K, Penova M, Kawaguchi T, Nakamura H, Hama N, Shide K, Kubuki Y, Hidaka T, Kameda T, Nakamaki T, Ishiyama K, Miyawaki S, Yoon SS, Tobinai K, Miyazaki Y, Takaori-Kondo A, Matsuda F, Takeuchi K, Nureki O, Aburatani H, Watanabe T, Shibata T, Matsuoka M, Miyano S, Shimoda K, Ogawa S. Kataoka K, et al. Among authors: shibata t. Nat Genet. 2015 Nov;47(11):1304-15. doi: 10.1038/ng.3415. Epub 2015 Oct 5. Nat Genet. 2015. PMID: 26437031
Adult T cell leukemia/lymphoma (ATL) is a peripheral T cell neoplasm of largely unknown genetic basis, associated with human T cell leukemia virus type-1 (HTLV-1) infection. ...The identified alterations overlap significantly with the HTLV-1 Tax interactome a …
Adult T cell leukemia/lymphoma (ATL) is a peripheral T cell neoplasm of largely unknown genetic basis, associated with human …
Single-Cell Analysis Reveals a CD4+ T-cell Cluster That Correlates with PD-1 Blockade Efficacy.
Kagamu H, Yamasaki S, Kitano S, Yamaguchi O, Mouri A, Shiono A, Nishihara F, Miura Y, Hashimoto K, Imai H, Kaira K, Kobayashi K, Kanai Y, Shibata T, Horimoto K. Kagamu H, et al. Among authors: shibata t. Cancer Res. 2022 Dec 16;82(24):4641-4653. doi: 10.1158/0008-5472.CAN-22-0112. Cancer Res. 2022. PMID: 36219677 Free PMC article.
CD4+ T-cell immunity helps clonal proliferation, migration, and cancer cell killing activity of CD8+ T cells and is essential in antitumor immune responses. To identify CD4+ T-cell clusters responsible for antitumor immunity, we simultaneously analyzed the na …
CD4+ T-cell immunity helps clonal proliferation, migration, and cancer cell killing activity of CD8+ T cells and is essential …
The liver-brain-gut neural arc maintains the T(reg) cell niche in the gut.
Teratani T, Mikami Y, Nakamoto N, Suzuki T, Harada Y, Okabayashi K, Hagihara Y, Taniki N, Kohno K, Shibata S, Miyamoto K, Ishigame H, Chu PS, Sujino T, Suda W, Hattori M, Matsui M, Okada T, Okano H, Inoue M, Yada T, Kitagawa Y, Yoshimura A, Tanida M, Tsuda M, Iwasaki Y, Kanai T. Teratani T, et al. Among authors: shibata s. Nature. 2020 Sep;585(7826):591-596. doi: 10.1038/s41586-020-2425-3. Epub 2020 Jun 11. Nature. 2020. PMID: 32526765
Despite recent advances in our understanding of neuroimmune interactions, it remains unclear how the gut and brain communicate to maintain gut immune homeostasis, including in the induction and maintenance of peripheral regulatory T cells (pT(reg) cells), and what environm …
Despite recent advances in our understanding of neuroimmune interactions, it remains unclear how the gut and brain communicate to maintain g …
Fibroblast growth factor receptor 3 alterations and response to immune checkpoint inhibition in metastatic urothelial cancer: a real world experience.
Rose TL, Weir WH, Mayhew GM, Shibata Y, Eulitt P, Uronis JM, Zhou M, Nielsen M, Smith AB, Woods M, Hayward MC, Salazar AH, Milowsky MI, Wobker SE, McGinty K, Millburn MV, Eisner JR, Kim WY. Rose TL, et al. Among authors: shibata y. Br J Cancer. 2021 Oct;125(9):1251-1260. doi: 10.1038/s41416-021-01488-6. Epub 2021 Jul 22. Br J Cancer. 2021. PMID: 34294892 Free PMC article.
RNA expression, including molecular subtyping and T cell receptor clonality, was also compared between FGFR3-altered and non-altered patients. ...Moreover, we demonstrate that despite being less inflamed, FGFR3-altered tumours have equivalent T cell receptor (TCR) d …
RNA expression, including molecular subtyping and T cell receptor clonality, was also compared between FGFR3-altered and non-altered …
Spatial and single-cell colocalisation analysis reveals MDK-mediated immunosuppressive environment with regulatory T cells in colorectal carcinogenesis.
Hashimoto M, Kojima Y, Sakamoto T, Ozato Y, Nakano Y, Abe T, Hosoda K, Saito H, Higuchi S, Hisamatsu Y, Toshima T, Yonemura Y, Masuda T, Hata T, Nagayama S, Kagawa K, Goto Y, Utou M, Gamachi A, Imamura K, Kuze Y, Zenkoh J, Suzuki A, Takahashi K, Niida A, Hirose H, Hayashi S, Koseki J, Fukuchi S, Murakami K, Yoshizumi T, Kadomatsu K, Tobo T, Oda Y, Uemura M, Eguchi H, Doki Y, Mori M, Oshima M, Shibata T, Suzuki Y, Shimamura T, Mimori K. Hashimoto M, et al. Among authors: shibata t. EBioMedicine. 2024 May;103:105102. doi: 10.1016/j.ebiom.2024.105102. Epub 2024 Apr 12. EBioMedicine. 2024. PMID: 38614865 Free PMC article.
FINDINGS: CRC cells colocalised with regulatory T cells (Tregs) at the adenoma-carcinoma interface. At early-stage carcinogenesis, cell-cell interaction inference between colocalised adenoma and cancer epithelial cells and Tregs based on the spatial distribution of single …
FINDINGS: CRC cells colocalised with regulatory T cells (Tregs) at the adenoma-carcinoma interface. At early-stage carcinogenesis, ce …
Symbiotic bacteria-dependent expansion of MR1-reactive T cells causes autoimmunity in the absence of Bcl11b.
Shibata K, Motozono C, Nagae M, Shimizu T, Ishikawa E, Motooka D, Okuzaki D, Izumi Y, Takahashi M, Fujimori N, Wing JB, Hayano T, Asai Y, Bamba T, Ogawa Y, Furutani-Seiki M, Shirai M, Yamasaki S. Shibata K, et al. Nat Commun. 2022 Nov 14;13(1):6948. doi: 10.1038/s41467-022-34802-8. Nat Commun. 2022. PMID: 36376329 Free PMC article.
MHC class I-related protein 1 (MR1) is a metabolite-presenting molecule that restricts MR1-reactive T cells including mucosal-associated invariant T (MAIT) cells. In contrast to MAIT cells, the function of other MR1-restricted T cell subsets is largely unknow …
MHC class I-related protein 1 (MR1) is a metabolite-presenting molecule that restricts MR1-reactive T cells including mucosal-associa …
Spatial dynamics of CD39(+)CD8(+) exhausted T cell reveal tertiary lymphoid structures-mediated response to PD-1 blockade in esophageal cancer.
Tanoue K, Ohmura H, Uehara K, Ito M, Yamaguchi K, Tsuchihashi K, Shinohara Y, Lu P, Tamura S, Shimokawa H, Isobe T, Ariyama H, Shibata Y, Tanaka R, Kusaba H, Esaki T, Mitsugi K, Kiyozawa D, Iwasaki T, Yamamoto H, Oda Y, Akashi K, Baba E. Tanoue K, et al. Among authors: shibata y. Nat Commun. 2024 Oct 19;15(1):9033. doi: 10.1038/s41467-024-53262-w. Nat Commun. 2024. PMID: 39426955 Free PMC article.
Here, imaging mass cytometry of tumor tissues from ICB-treated patients identifies a distinct cell population of CD39(+)PD-1(+)CD8(+) T cells, specifically the TCF1(+) subset, precursor exhausted T (CD39(+) Tpex) cells, which positively correlate with ICB benefit. . …
Here, imaging mass cytometry of tumor tissues from ICB-treated patients identifies a distinct cell population of CD39(+)PD-1(+)CD8(+) T
Close link between development and function of gamma-delta T cells.
Shibata K. Shibata K. Microbiol Immunol. 2012 Apr;56(4):217-27. doi: 10.1111/j.1348-0421.2012.00435.x. Microbiol Immunol. 2012. PMID: 22300310 Free article. Review.
Murine gammadelta T cells develop as the first T-cell lineage within the fetal thymus and disproportionately localize in mucosal tissues such as lung, skin, uterus, and intestine of adult mice. ...Hence, it is clinically important to understand the mechanisms that r …
Murine gammadelta T cells develop as the first T-cell lineage within the fetal thymus and disproportionately localize in mucos …
Functions of mucosal associated invariant T cells in eye diseases.
Fukui C, Yamana S, Xue Y, Shirane M, Tsutsui H, Asahara K, Yoshitomi K, Ito T, Lestari T, Hasegawa E, Yawata N, Takeda A, Sonoda KH, Shibata K. Fukui C, et al. Among authors: shibata k. Front Immunol. 2024 Feb 19;15:1341180. doi: 10.3389/fimmu.2024.1341180. eCollection 2024. Front Immunol. 2024. PMID: 38440736 Free PMC article. Review.
Mucosal-associated invariant T (MAIT) cells are a unique subset of T cells that recognizes metabolites derived from the vitamin B2 biosynthetic pathway. ...The protective functions of MAIT cells are induced by T-cell receptor (TCR)-mediated activation. Howeve …
Mucosal-associated invariant T (MAIT) cells are a unique subset of T cells that recognizes metabolites derived from the vitami …
8,950 results