4.8 Article

Guiding T lymphopoiesis from pluripotent stem cells by defined transcription factors

Journal

CELL RESEARCH
Volume 30, Issue 1, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41422-019-0251-7

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Funding

  1. Strategic Priority Research Program of Chinese Academy of Sciences [XDA16010601]
  2. CAS Key Research Program of Frontier Sciences [QYZDB-SSW-SMC057]
  3. Major Research and Development Project of Guangzhou Regenerative Medicine and Health Guangdong Laboratory [2018GZR110104006]
  4. Chinese Ministry of Science and Technology [2015CB964401, 2016YFA0100601, 2017YFA0103401, 2015CB964902, 2015CB964901]
  5. Health and Medical Care Collaborative Innovation Program of Guangzhou Scientific and Technology [201803040017]
  6. Major Scientific and Technological Project of Guangdong Province [2014B020225005]
  7. Science and Technology Planning Project of Guangdong Province [2017B030314056]
  8. Program for Guangdong Introducing Innovative and Entrepreneurial Teams [2017ZT07S347]
  9. National Natural Science Foundation of China [31471117, 81470281, 31600948, 31425012]

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Achievement of immunocompetent and therapeutic T lymphopoiesis from pluripotent stem cells (PSCs) is a central aim in T cell regenerative medicine. To date, preferentially reconstituting T lymphopoiesis in vivo from PSCs remains a practical challenge. Here we documented that synergistic and transient expression of Runx1 and Hoxa9 restricted in the time window of endothelial-to-hematopoietic transition and hematopoietic maturation stages in a PSC differentiation scheme (iR9-PSC) in vitro induced preferential generation of engraftable hematopoietic progenitors capable of homing to thymus and developing into mature T cells in primary and secondary immunodeficient recipients. Single-cell transcriptome and functional analyses illustrated the cellular trajectory of T lineage induction from PSCs, unveiling the T-lineage specification determined at as early as hemogenic endothelial cell stage and identifying the bona fide pre-thymic progenitors. The induced T cells distributed normally in central and peripheral lymphoid organs and exhibited abundant TCR alpha beta repertoire. The regenerative T lymphopoiesis restored immune surveillance in immunodeficient mice. Furthermore, gene-edited iR9-PSCs produced tumor-specific T cells in vivo that effectively eradicated tumor cells. This study provides insight into universal generation of functional and therapeutic T cells from the unlimited and editable PSC source.

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