Progenitor T-cell differentiation from hematopoietic stem cells using Delta-like-4 and VCAM-1.

Shukla, Shreya; Langley, Matthew A; Singh, Jastaranpreet; Edgar, John M; Mohtashami, Mahmood; Zúñiga-Pflücker, Juan Carlos; Zandstra, Peter W · Nat Methods · 2017

basic_science · Level V

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Abstract

The molecular and cellular signals that guide T-cell development from hematopoietic stem and progenitor cells (HSPCs) remain poorly understood. The thymic microenvironment integrates multiple niche molecules to potentiate T-cell development in vivo. Recapitulating these signals in vitro in a stromal cell-free system has been challenging and limits T-cell generation technologies. Here, we describe a fully defined engineered in vitro niche capable of guiding T-lineage development from HSPCs. Synergistic interactions between Notch ligand Delta-like 4 and vascular cell adhesion molecule 1 (VCAM-1) were leveraged to enhance Notch signaling and progenitor T-cell differentiation rates. The engineered thymus-like niche enables in vitro production of mouse Sca-1<sup>+</sup>cKit<sup>+</sup> and human CD34<sup>+</sup> HSPC-derived CD7<sup>+</sup> progenitor T-cells capable of in vivo thymus colonization and maturation into cytokine-producing CD3<sup>+</sup> T-cells. This engineered thymic-like niche provides a platform for in vitro analysis of human T-cell development as well as clinical-scale cell production for future development of immunotherapeutic applications.

Medical subject headings