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Cancer-Associated Fibroblasts and Squamous Epithelial Cells Constitute a Unique Microenvironment in a Mouse Model of Inflammation-Induced Colon Cancer. | LitMetric

AI Article Synopsis

  • The tumor microenvironment in colorectal tumors consists of diverse cell types, and understanding their interactions is crucial for grasping tumor complexity.
  • This study utilized single-cell RNA sequencing and other advanced imaging techniques to compare microenvironments in two mouse models of colorectal tumors — one sporadic and one driven by inflammation.
  • Results showed distinct differences between the tumor types, particularly in the abundance of cancer-associated fibroblasts and the presence of unique squamous cells, highlighting their roles in tumor progression, especially in inflammation-driven cancer models.

Article Abstract

The tumor microenvironment plays a key role in the pathogenesis of colorectal tumors and contains various cell types including epithelial, immune, and mesenchymal cells. Characterization of the interactions between these cell types is necessary for revealing the complex nature of tumors. In this study, we used single-cell RNA-seq (scRNA-seq) to compare the tumor microenvironments between a mouse model of sporadic colorectal adenoma (Lrig1;Apc) and a mouse model of inflammation-driven colorectal cancer induced by azoxymethane and dextran sodium sulfate (AOM/DSS). While both models develop tumors in the distal colon, we found that the two tumor types have distinct microenvironments. AOM/DSS tumors have an increased abundance of two populations of cancer-associated fibroblasts (CAFs) compared with APC tumors, and we revealed their divergent spatial association with tumor cells using multiplex immunofluorescence (MxIF) imaging. We also identified a unique squamous cell population in AOM/DSS tumors, whose origins were distinct from anal squamous epithelial cells. These cells were in higher proportions upon administration of a chemotherapy regimen of 5-Fluorouracil/Irinotecan. We used computational inference algorithms to predict cell-cell communication mediated by ligand-receptor interactions and downstream pathway activation, and identified potential mechanistic connections between CAFs and tumor cells, as well as CAFs and squamous epithelial cells. This study provides important preclinical insight into the microenvironment of two distinct models of colorectal tumors and reveals unique roles for CAFs and squamous epithelial cells in the AOM/DSS model of inflammation-driven cancer.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9114773PMC
http://dx.doi.org/10.3389/fonc.2022.878920DOI Listing

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