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From stem cells to somites: Revealing genetic and exogenous factors of human embryogenesis.

Maria Teresa Alejo-Vinogradova ,
Yunna E Strøm ,
Lieke A Lamers ,
Yolanda W Chang ,
Martijn J Hendriksen ,
Mariya Moosajee ,
Michiel Vermeulen ,
Suzan Stelloo

Abstract

Stem-cell-based human embryo models offer an ethically tractable platform for studying early human development. This study employs somitoids, three-dimensional models of human somitogenesis, to investigate how transcriptional programs and culture conditions influence somite formation and segmentation. We show that pre-differentiation culture medium impacts the developmental potential of induced pluripotent stem cells (iPSCs), with StemFit medium and Matrigel embedding outperforming mTeSR Plus medium in generating robust somite-like structures. Strikingly, these differences arise despite only subtle changes in transcriptomic and time-resolved proteomic profiles. P300-based proximity labeling also reveals a largely overlapping set of chromatin-associated regulators across iPSC conditions. In somitoids, enhancer-associated profiling highlights factors linked to somitogenesis, including MESP2 and TBX6. Knockout of three identified regulators, BPTF, RBPJ, and CITED2, demonstrate their essential roles in somite formation. Together, these findings highlight how culture conditions and enhancer-associated networks influence early human development and demonstrate somitoids as a scalable system for functional genomics.

More about this publication

Stem cell reports

Pages 103023
Publication date 06-08-2026

Full text links

Publisher website (DOI) 10.1016/j.stemcr.2026.103023
Europe PubMed Central 42561940
Pubmed 42561940

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