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April 19, 2026Cancer Research0 citations

Abstract LB239: Spatial programs of cancer-associated and normal fibroblasts diverges with mismatch repair status in colorectal cancer

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DBDebanjan BaruaTTTze Guan TanSHS. Ho

Key Points

  • To investigate how fibroblast subtypes vary with mismatch repair status in colorectal cancer, focusing on their spatial organization.
  • Analyzed fresh primary tumors from 41 CRC donors using single-cell RNA sequencing (scRNA-seq) to classify fibroblast subtypes.
  • Mapped fibroblast subtypes in matched formalin-fixed, paraffin-embedded (FFPE) sections and an independent archival cohort.
  • Defined tumor regions based on tumor and stromal cell densities.
  • Identified 5 fibroblast subtypes conserved across mismatch repair settings.
  • Observed significant differences in the prevalence of cancer-associated fibroblasts (CAFs) between MMRp and MMRd tumors.
  • Found that normal fibroblasts (NFs) showed varying densities in relation to CAFs depending on mismatch repair status.

Abstract

Abstract Background: Fibroblast-derived transcriptional signatures in colorectal cancer (CRC) associate with poor prognosis and are elevated in mismatch repair-proficient (MMRp) versus mismatch repair-deficient (MMRd) disease. Yet the spatial organization of fibroblast subtypes by MMR status is undefined, limiting insight into stromal neighborhoods that modulate these distinct microenvironments. We hypothesized that CRC harbors MMR-stratified stromal niches with distinct compositions of various fibroblast subtypes. Methods: Fresh primary tumors from 41 CRC donors (MMRp n=34, MMRd n=7) underwent single-cell RNA sequencing (scRNA-seq) to define fibroblast subtypes, which were subsequently mapped on matched formalin-fixed, paraffin-embedded (FFPE) sections and an independent archival FFPE cohort (MMRp n=50, MMRd n=30) via multiplex whole-slide imaging. Tumor regions were defined by tumor vs. stromal cell densities (tumor core: high tumor/low stromal; invasive margin: low tumor/high stromal). Results: scRNA-seq resolved 5 fibroblast subtypes conserved across MMR settings. Two were cancer-associated fibroblasts (CAFs): myofibroblastic CAFs enriched for fibrillar ECM genes (myCAFECM), inflammatory CAFs (iCAFs). Three were normal fibroblasts (NFs): subepithelial myofibroblasts (SEMFs; contractility genes), lamina propria fibroblasts (LPFs; growth factor activity genes), and crypt fibroblasts (CFs; fibrillar and non-fibrillar ECM genes). The invasive margin within 600 µm of the tumor core periphery showed 4-fold higher CAF density (p0. 01) relative to other areas, regardless of MMR status. This region constituted a CAF-enriched niche, within which CAFs formed focal aggregates. Aggregate composition diverged by MMR status: in MMRp tumors, myCAFECM were 16-fold more prevalent than iCAFs (p0. 01), whereas in MMRd tumors, iCAFs were 3-fold more prevalent than myCAFECM (p0. 03). NFs were collectively as abundant as CAFs in the tumor stroma, with MMR-dependent distributions. In MMRp tumors, LPFs were 5-fold more prevalent within the CAF-niche versus the deeper invasive margin (p0. 01), whereas CF peak densities were 2-fold higher in deeper invasive margin (p0. 02). In MMRd tumors, SEMFs were 2fold more prevalent in the niche (p0. 05). Among all 5 subtypes, SEMFs localized closest to tumor cells in both MMR settings, and ligand-receptor analysis (LIANA) of SEMF-tumor interactions showed enrichment of ECM-remodeling pathways in tumors relative to normal colorectal tissues. Conclusions: CRC contains MMR-dependent fibroblast niches characterized by focal CAF aggregates and distinct NF localization. Our data uniquely highlight NF prevalence and patterning in CRC and prompt further investigation into NF-tumor crosstalk in the TME. Citation Format: Debanjan Barua, Tze Guan Tan, Shu Wen Samantha Ho, Michael T. Wong, Iain B. Tan, Jennifer H. Yearley, Su-Yang Liu. Spatial programs of cancer-associated and normal fibroblasts diverges with mismatch repair status in colorectal cancer abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 2 (Late-Breaking, Clinical Trial, and Invited Abstracts) ; 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86 (8Suppl): Abstract nr LB239.

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Barua et al. (2026) studied this question.

synapsesocial.com/papers/69e4734c010ef96374d8f28bhttps://doi.org/10.1158/1538-7445.am2026-lb239
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