Developmental landmarks and cellular transitions during extravillous trophoblast cell differentiation

A Ayelen Moreno-Irusta (Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center) M Malay Kumar Basu (Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center) E Esteban M. Dominguez (Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center) T Thomas S. Chen (Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center) S Sawyer H. Smith (Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center) K Kaela M. Varberg (Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center) H Hiroaki Okae (Department of Trophoblast Research, Institute of Molecular Embryology and Genetics, Kumamoto University) T Takahiro Arima (Department of Informative Genetics, Environment and Genome Research Center, Tohoku University Graduate School of Medicine) M Michael J. Soares (Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center)

Abstract

Human trophoblast stem (TS) can be captured, maintained in vitro under specific conditions, and differentiated into extravillous trophoblast (EVT) cells. The regulatory mechanisms that govern the self-renewal and differentiation of human TS cells into EVT cells are largely unknown. In this study, bulk RNA-sequencing (RNA-seq) and single cell RNA-seq (scRNA-seq) were performed on human TS cells maintained in the stem state and on cells progressing from the stem state into EVT cells (differentiation days 3, 6, and 8). Distinct bulk and single cell transcript profiles were identified for each day of analysis. Day 3 of EVT cell differentiation represented a striking transition point and was readily distinguished from stem state and days 6 and 8 of EVT cell differentiation. Analysis of scRNA-seq led to the identification of several unique cell populations, trophoblast cell developmental state-specific regulons, and trajectories. We elucidated functional roles of key regulators of EVT cell development: cyclin B1, CCAAT/enhancer-binding protein beta, and A Disintegrin And Metalloproteinase (ADAM) metallopeptidase with thrombospondin type 1 motif 20. Collectively, we have defined developmental landmarks and transitional cell populations during EVT cell differentiation. These findings provide a valuable resource and foundation for future investigations into regulatory mechanisms controlling TS cell differentiation into the EVT cell lineage.

Article Details

Volume / Issue Vol. 123, Issue 19
Published May 12, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (9)

A

Ayelen Moreno-Irusta

Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center

M

Malay Kumar Basu

Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center

E

Esteban M. Dominguez

Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center

T

Thomas S. Chen

Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center

S

Sawyer H. Smith

Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center

K

Kaela M. Varberg

Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center

H

Hiroaki Okae

Department of Trophoblast Research, Institute of Molecular Embryology and Genetics, Kumamoto University

T

Takahiro Arima

Department of Informative Genetics, Environment and Genome Research Center, Tohoku University Graduate School of Medicine

M

Michael J. Soares

Institute for Reproductive and Developmental Sciences, University of Kansas Medical Center