Related Experiment Video
Updated: Oct 11, 2026

Generation and Single-Cell Transcriptomic Analysis of Hepatocellular Carcinoma Organoids following Drug Treatment
Published on: May 26, 2026
Single-cell transcriptome analysis reveals onco-fetal reprogramming with implications for drug resistance and
Yongle Xu1, Shaoyi Chen2, Zhenglin Lu1
1Harbin Medical University.
Abstract:
Onco-fetal reprogramming of the tumor ecosystem induces fetal-like characteristics, leading to tumor growth and malignant progression. Here, we develop a robust computational pipeline to systematically identify onco-fetal (OF) cells, using single-cell transcriptomic data from corresponding fetal and tumor tissues across multiple cancer types. OF cells are consistently detected across diverse malignancies and exhibit pronounced stem-like properties. Core transcription factors involved in onco-fetal reprogramming are identified, including PTMA, ATF5, TCF4, and FOS, whose coordinated activities may promote tumor progression. Strategically positioned OF cells orchestrate tumor microenvironment crosstalk, specifically impairing B cell function. OF cells are further verified in additional cancers, and we find that high OF cell abundance contributes to enhanced drug resistance and cancer recurrence. Critically, pancancer analyses establish that OF cell markers universally portend adverse prognoses. Overall, our study uncovers a clinically consequential cancer cell subpopulation and highlights its potential as a target for precision oncology.
Related Concept Videos
Somatic to iPS Cell Reprogramming
Methods of Nuclear Reprogramming
Treatment Resistant Cancers

