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ABSTRACT Background Colorectal cancer (CRC) is one of the most commonly occurring cancers all over the world. Because of the high metastasis rate, the 5‐year survival rate of metastatic CRC is only around 10%. CRC cells trigger the remodeling of the tumor microenvironment (TME), so decoding the TME between metastatic and primary sites becomes crucial. Methods Single‐cell sequencing and analysis were performed on 36 samples from four anatomical locations in nine untreated CRC liver metastasis patients. Cells from primary and metastatic sites were compared, and TMEs were validated. Genes from primary and metastatic sites were compared using a nonparametric test. Results Eleven major cell types are identified, and high heterogeneity of cell distribution among different locations is observed. We reveal several new features in liver metastatic tumors, including CXCL13 + CD4 T cells and regulatory CD4 T cells enriched, exhausted CD8 + T cells (Tex) increased, SPP1+ tumor macrophage increased, IGFBP7+ cancer‐associated fibroblasts in the metastatic TME, and the relative activation of the linoleic acid metabolism pathway. Besides, tumor cells contribute to four distinct biological modules, encompassing apoptosis, epithelial‐mesenchymal transition, the cell cycle, and immune processes. Conclusion Our study contributes new features for the microenvironment of colon cancer and liver metastasis, which may provide unique insights for novel biomarkers and potential treatment strategies.
Zhao et al. (Tue,) studied this question.