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A clinically applicable and scalable method to regenerate T-cells from iPSCs for off-the-shelf T-cell immunotherapy

Author

Listed:
  • Shoichi Iriguchi

    (Kyoto University
    Takeda-CiRA Joint Program (T-CiRA))

  • Yutaka Yasui

    (Kyoto University)

  • Yohei Kawai

    (Kyoto University
    Takeda-CiRA Joint Program (T-CiRA))

  • Suguru Arima

    (Takeda-CiRA Joint Program (T-CiRA)
    T-CiRA Discovery, Takeda Pharmaceutical Company)

  • Mihoko Kunitomo

    (Takeda-CiRA Joint Program (T-CiRA)
    T-CiRA Discovery, Takeda Pharmaceutical Company)

  • Takayuki Sato

    (Takeda-CiRA Joint Program (T-CiRA)
    T-CiRA Discovery, Takeda Pharmaceutical Company)

  • Tatsuki Ueda

    (Kyoto University)

  • Atsutaka Minagawa

    (Kyoto University
    Takeda-CiRA Joint Program (T-CiRA))

  • Yuta Mishima

    (Kyoto University
    Takeda-CiRA Joint Program (T-CiRA))

  • Nariaki Yanagawa

    (Kyoto University
    Takeda-CiRA Joint Program (T-CiRA))

  • Yuji Baba

    (Takeda-CiRA Joint Program (T-CiRA)
    T-CiRA Discovery, Takeda Pharmaceutical Company)

  • Yasuyuki Miyake

    (Kyoto University
    Takeda-CiRA Joint Program (T-CiRA))

  • Kazuhide Nakayama

    (Takeda-CiRA Joint Program (T-CiRA)
    T-CiRA Discovery, Takeda Pharmaceutical Company)

  • Maiko Takiguchi

    (Takeda-CiRA Joint Program (T-CiRA)
    T-CiRA Discovery, Takeda Pharmaceutical Company)

  • Tokuyuki Shinohara

    (Takeda-CiRA Joint Program (T-CiRA)
    T-CiRA Discovery, Takeda Pharmaceutical Company)

  • Tetsuya Nakatsura

    (Division of Cancer Immunotherapy, Exploratory Oncology Research & Clinical Trial Center, National Cancer Center)

  • Masaki Yasukawa

    (Ehime University Graduate School of Medicine
    Ehime Prefectural University of Health Sciences)

  • Yoshiaki Kassai

    (Takeda-CiRA Joint Program (T-CiRA)
    T-CiRA Discovery, Takeda Pharmaceutical Company)

  • Akira Hayashi

    (Takeda-CiRA Joint Program (T-CiRA)
    T-CiRA Discovery, Takeda Pharmaceutical Company)

  • Shin Kaneko

    (Kyoto University
    Takeda-CiRA Joint Program (T-CiRA))

Abstract

Clinical successes demonstrated by chimeric antigen receptor T-cell immunotherapy have facilitated further development of T-cell immunotherapy against wide variety of diseases. One approach is the development of “off-the-shelf” T-cell sources. Technologies to generate T-cells from pluripotent stem cells (PSCs) may offer platforms to produce “off-the-shelf” and synthetic allogeneic T-cells. However, low differentiation efficiency and poor scalability of current methods may compromise their utilities. Here we show improved differentiation efficiency of T-cells from induced PSCs (iPSCs) derived from an antigen-specific cytotoxic T-cell clone, or from T-cell receptor (TCR)-transduced iPSCs, as starting materials. We additionally describe feeder-free differentiation culture systems that span from iPSC maintenance to T-cell proliferation phases, enabling large-scale regenerated T-cell production. Moreover, simultaneous addition of SDF1α and a p38 inhibitor during T-cell differentiation enhances T-cell commitment. The regenerated T-cells show TCR-dependent functions in vitro and are capable of in vivo anti-tumor activity. This system provides a platform to generate a large number of regenerated T-cells for clinical application and investigate human T-cell differentiation and biology.

Suggested Citation

  • Shoichi Iriguchi & Yutaka Yasui & Yohei Kawai & Suguru Arima & Mihoko Kunitomo & Takayuki Sato & Tatsuki Ueda & Atsutaka Minagawa & Yuta Mishima & Nariaki Yanagawa & Yuji Baba & Yasuyuki Miyake & Kazu, 2021. "A clinically applicable and scalable method to regenerate T-cells from iPSCs for off-the-shelf T-cell immunotherapy," Nature Communications, Nature, vol. 12(1), pages 1-15, December.
  • Handle: RePEc:nat:natcom:v:12:y:2021:i:1:d:10.1038_s41467-020-20658-3
    DOI: 10.1038/s41467-020-20658-3
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    Cited by:

    1. Shicheng Sun & Ali Motazedian & Jacky Y. Li & Kevin Wijanarko & Joe Jiang Zhu & Kothila Tharmarajah & Kathleen A. Strumila & Anton Shkaruta & L. Rayburn Nigos & Jacqueline V. Schiesser & Yi Yu & Paul , 2024. "Efficient generation of human NOTCH ligand-expressing haemogenic endothelial cells as infrastructure for in vitro haematopoiesis and lymphopoiesis," Nature Communications, Nature, vol. 15(1), pages 1-14, December.

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