Efficient chemical reprogramming of human T cells into functional megakaryocytes and platelets.

Qin, Jinhua; Hua, Zheng; Zhao, Xingxing; Jiang, Jianan; Li, Jisheng; Wang, Sihan; Pan, Yingwei; Zhang, Bowen et al. · Sci Adv · 2026

basic_science · Level V

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Abstract

The generation of megakaryocytes (MKs) from human somatic cells through chemical reprogramming represents a promising strategy for developing alternative platelet sources. Building on our prior chemical reprogramming protocol for converting erythroblasts to MKs, we established a robust method that successfully generated induced MKs (iMKs) from human cord blood-derived CD3<sup>+</sup> T cells, which is a more abundant source. This method used a five-small molecule cocktail containing a reprogramming booster, AZD4205, to promote erasure of T cell identity and facilitate fate transition toward MKs. T cell-derived iMKs exhibited characteristic MK cellular and molecular signatures, demonstrating the capacity to produce proplatelets and release functional platelets. Single-cell RNA sequencing further revealed that iMKs were heterogeneous with distinct functional profiles, including cycling, immune, and thrombopoiesis-biased MKs. Our findings highlight an optimized chemical reprogramming strategy that enables efficient conversion of T cells to MKs, providing a practical and convenient approach to generating clinically relevant MKs and platelets.

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