A FOXF1/FOXF2-associated CAF-like transitional fibroblast state is defined and links it to stromal signaling, immune–stromal communication, and cancer-type-specific clinical relevance.
Abstract
Fibroblast heterogeneity shapes tumor progression, yet the transitional states linking normal-associated fibroblasts to cancer-associated fibroblasts (CAFs) remain poorly defined. Here, we integrated single-cell transcriptomic profiles of more than 90,000 stromal cells from 281 samples across nine cancer types to construct a pan-cancer atlas of fibroblast diversity. We identified a distinct CAF-like population positioned between normal-activated fibroblasts and established CAF subsets along the inferred fibroblast activation trajectory. Integration with single-nucleus chromatin accessibility data nominated FOXF1 and FOXF2 as candidate regulators of this CAF-like state. Functionally, CAF-like fibroblasts were characterized by non-canonical WNT activity, WNT5A-associated stromal communication, and a candidate GZMA–F2R/PAR immune–stromal signaling axis supported by spatial transcriptomics. Clinically, the CAF-like signature showed context-dependent prognostic relevance, with high expression associated with poorer survival in the tumor compartment of TCGA stomach adenocarcinoma. Together, this study defines a FOXF1/FOXF2-associated CAF-like transitional fibroblast state and links it to stromal signaling, immune–stromal communication, and cancer-type-specific clinical relevance.
Cancer-associated fibroblasts (CAFs) exhibit substantial heterogeneity in colorectal cancer (CRC), yet the upstream tumor-derived signals associated with their state remodeling during disease progression remain incompletely defined. Through integrative analysis of multi-cohort single-cell transcriptomics, proteom...
BACKGROUND
Cancer-associated fibroblasts (CAFs) are key components of the bladder cancer microenvironment, but how specific CAF subpopulations drive malignant progression remains unclear. This study aimed to identify CAF driver genes and elucidate the role of caveolin-1 (CAV1) in CAF-mediated bladder cancer progression...
Introduction Although the role of cancer-associated fibroblasts (CAFs) in cancer progression is increasingly recognized, their spatial dynamics and interactions with immune cells remain poorly understood. Methods Here, we present a computational framework that integrates single-cell resolution spatial transcriptomics a...
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Integrative single-cell RNA sequencing analysis of publicly available datasets from non-small cell lung cancer and breast cancer is performed to systematically map transcriptional heterogeneity and regulatory networks within the TME, providing a systems-level framework of TME organization.
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