Generation of mature T cells from human hematopoietic stem and progenitor cells in artificial thymic organoids

CS Seet, C He, MT Bethune, S Li, B Chick… - Nature …, 2017 - nature.com
CS Seet, C He, MT Bethune, S Li, B Chick, EH Gschweng, Y Zhu, K Kim, DB Kohn
Nature methods, 2017nature.com
Studies of human T cell development require robust model systems that recapitulate the full
span of thymopoiesis, from hematopoietic stem and progenitor cells (HSPCs) through to
mature T cells. Existing in vitro models induce T cell commitment from human HSPCs;
however, differentiation into mature CD3+ TCR-αβ+ single-positive CD8+ or CD4+ cells is
limited. We describe here a serum-free, artificial thymic organoid (ATO) system that supports
efficient and reproducible in vitro differentiation and positive selection of conventional …
Abstract
Studies of human T cell development require robust model systems that recapitulate the full span of thymopoiesis, from hematopoietic stem and progenitor cells (HSPCs) through to mature T cells. Existing in vitro models induce T cell commitment from human HSPCs; however, differentiation into mature CD3+TCR-αβ+ single-positive CD8+ or CD4+ cells is limited. We describe here a serum-free, artificial thymic organoid (ATO) system that supports efficient and reproducible in vitro differentiation and positive selection of conventional human T cells from all sources of HSPCs. ATO-derived T cells exhibited mature naive phenotypes, a diverse T cell receptor (TCR) repertoire and TCR-dependent function. ATOs initiated with TCR-engineered HSPCs produced T cells with antigen-specific cytotoxicity and near-complete lack of endogenous TCR Vβ expression, consistent with allelic exclusion of Vβ-encoding loci. ATOs provide a robust tool for studying human T cell differentiation and for the future development of stem-cell-based engineered T cell therapies.
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