Single-cell transcriptomics reveals a conserved embryonic progenitor in different human cancers

preprint OA: closed
View at publisher

Abstract

Cellular plasticity, a critical feature of embryonic development, is often reactivated in cancer, enabling tumor cells to acquire stem-like properties and facilitate uncontrolled growth. This study compares cellular plasticity in cancer and early human development by integrating single-cell data from three cancers and embryoid bodies. The analysis identifies a shared, highly proliferative progenitor-like state, driven by an E2F-TFDP transcriptional axis and enriched in key cell-cycle regulators UBE2C , TOP2A , BIRC5 , and NUSAP1 . Functionally linked to cell-cycle progression and DNA repair, this state acts as a lineage hub within tumors. Spatial transcriptomics revealed that this state is enriched in lung adenocarcinoma and in lung tissue with basal cell hyperplasia, a potential precursor to squamous cell carcinoma. Validation across eight cancer types demonstrates a prevalence of this program in tumors versus normal cells. Collectively, these findings define a conserved mechanism of tumor plasticity with potential for early detection and targeted therapy. Abstract Figure

My notes (saved in your browser only)

Citation neighborhood (no data yet)

We don't have any in-corpus citations linked to this paper yet. This is a recent paper (2025) — citers typically take a year or two to land, and the OpenAlex reference graph may still be filling in.

Source provenance

europepmc
last seen: 2026-05-20T01:45:00.602351+00:00