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Fingerprint Dive into the research topics where Shunsuke Chikuma is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 11 Similar Profiles
T-Lymphocytes Medicine & Life Sciences
T-cells Chemical Compounds
Regulatory T-Lymphocytes Medicine & Life Sciences
Neoplasms Medicine & Life Sciences
Immunity Medicine & Life Sciences
Aquaporin 3 Medicine & Life Sciences
CTLA-4 Antigen Medicine & Life Sciences
Inbred MRL lpr Mouse Medicine & Life Sciences

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Research Output 1998 2019

  • 2463 Citations
  • 23 h-Index
  • 42 Article
  • 2 Chapter
  • 1 Letter
  • 1 Review article

Analytical performance of a new automated chemiluminescent magnetic immunoassays for soluble PD-1, PD-L1, and CTLA-4 in human plasma

Goto, M., Chamoto, K., Higuchi, K., Yamashita, S., Noda, K., Iino, T., Miura, M., Yamasaki, T., Ogawa, O., Sonobe, M., Date, H., Hamanishi, J., Mandai, M., Tanaka, Y., Chikuma, S., Hatae, R., Muto, M., Minamiguchi, S., Minato, N. & Honjo, T., 2019 Dec 1, In : Scientific reports. 9, 1, 10144.

Research output: Contribution to journalArticle

Open Access
Immunoassay
Neoplasms
Biomarkers
Immunotherapy
Enzyme-Linked Immunosorbent Assay
24 Citations (Scopus)

Brain regulatory T cells suppress astrogliosis and potentiate neurological recovery

Ito, M., Komai, K., Mise-Omata, S., Iizuka-Koga, M., Noguchi, Y., Kondo, T., Sakai, R., Matsuo, K., Nakayama, T., Yoshie, O., Nakatsukasa, H., Chikuma, S., Shichita, T. & Yoshimura, A., 2019 Jan 10, In : Nature. 565, 7738, p. 246-250 5 p.

Research output: Contribution to journalLetter

Regulatory T-Lymphocytes
Brain
Stroke
Chemokine CCL1
Chemokine CCL20

In Vitro Conversion of Activated T Cells into Stem Cell Memory-Like T Cells

Kondo, T., Imura, Y., Ando, M., Chikuma, S. & Yoshimura, A., 2019 Jan 1, Methods in Molecular Biology. Humana Press Inc., p. 41-51 11 p. (Methods in Molecular Biology; vol. 2048).

Research output: Chapter in Book/Report/Conference proceedingChapter

Stem Cells
T-Lymphocytes
Neoplasm Antigens
Cell- and Tissue-Based Therapy
Coculture Techniques
2 Citations (Scopus)

Loss of TET proteins in regulatory T cells promotes abnormal proliferation, Foxp3 destabilization and IL-17 expression

Nakatsukasa, H., Oda, M., Yin, J., Chikuma, S., Ito, M., Koga-Iizuka, M., Someya, K., Kitagawa, Y., Ohkura, N., Sakaguchi, S., Koya, I., Sanosaka, T., Kohyama, J., Tsukada, Y. I., Yamanaka, S., Takamura-Enya, T., Lu, Q. & Yoshimura, A., 2019 Jan 1, In : International immunology. 31, 5, p. 335-347 13 p.

Research output: Contribution to journalArticle

Interleukin-17
Protein Transport
Regulatory T-Lymphocytes
Immunoglobulin G
5-Methylcytosine
1 Citation (Scopus)

PDIP38/PolDIP2 controls the DNA damage tolerance pathways by increasing the relative usage of translesion DNA synthesis over template switching

Tsuda, M., Ogawa, S., Ooka, M., Kobayashi, K., Hirota, K., Wakasugi, M., Matsunaga, T., Sakuma, T., Yamamoto, T., Chikuma, S., Sasanuma, H., Debatisse, M., Doherty, A. J., Fuchs, R. P. & Takeda, S., 2019 Mar 1, In : PloS one. 14, 3, e0213383.

Research output: Contribution to journalArticle

Open Access
Damage tolerance
DNA damage
DNA Damage
synthesis
DNA