ArticleFrontiers in immunology2026
A CCL4-enriched NK-cell transcriptional state is associated with inflammatory and myeloid-stromal programs in colorectal cancer liver metastasis.
Article in Frontiers in immunology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Background: Colorectal cancer liver metastasis (CRLM) develops within a liver-specific immune and stromal microenvironment, yet the natural killer (NK)-cell adaptations associated with this metastatic niche remain incompletely defined. Methods: We integrated human single-cell RNA sequencing, an exploratory murine cross-species comparison, spatial transcriptomics, bulk transcriptomic cohorts, donor-level pseudobulk analyses, cell-cell communication, pseudotime and in silico perturbation analyses, together with multiplex immunofluorescence, conditioned-medium assays, ELISA and immunoblotting. Results: Across 73,486 cells from six anatomical sites, NK cells showed lower relative representation within the recovered T/NK compartment in primary tumors and liver metastases, while the residual compartment showed inflammatory remodeling. NK-cell reclustering identified CD56-associated and CD16-associated CCL4 source clusters that were analyzed jointly as a CCL4-enriched NK-cell transcriptional state characterized by NF-κB, TNF, MAPK and JAK-STAT programs. In paired GSE164522 samples from 10 patients, this state was independently recovered, with nominally higher CCL4-associated signal in liver metastases than in primary tumors that did not remain significant after Benjamini-Hochberg correction. Spatial and communication analyses associated the state with SPP1-positive macrophage and stromal programs without establishing causality. Tissue imaging, conditioned-medium assays, ELISA and immunoblotting provided complementary marker-level and model-system support for CCL4-associated inflammatory activity and NF-κB pathway responsiveness. Conclusion: CRLM is associated with altered NK-cell representation among recovered cells and a reproducible CCL4-enriched inflammatory NK-cell transcriptional state. Its association with inflammatory and myeloid-stromal programs across independent, spatial and model-system analyses provides a focused framework for future lineage-restricted and
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