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Single cell atlas of kidney cancer endothelial cells reveals distinct expression profiles and phenotypes. | LitMetric

AI Article Synopsis

  • Tumor endothelial cells (TECs) play a crucial role in the interaction between tumors and immune cells, but their characteristics in clear cell renal cell carcinoma (ccRCC) are not fully understood.
  • Researchers used single-cell RNA-sequencing to analyze TECs and normal endothelial cells (NECs) from ccRCC samples, creating a detailed gene expression resource for further study.
  • The findings reveal that TECs share common traits, showing resistance to treatment and increased interaction with immune cells, highlighting their potential role in the effectiveness of cancer therapies.

Article Abstract

Background: Tumor endothelial cells (TECs) represent the primary interface between the tumor microenvironment and circulating immune cells, however their phenotypes are incompletely understood in highly vascularized clear cell renal cell carcinoma (ccRCC).

Methods: We purified tumor and matched normal endothelial cells (NECs) from ccRCC specimens and performed single-cell RNA-sequencing to create a reference-quality atlas available as a searchable web resource for gene expression patterns. We established paired primary TECs and NECs cultures for ex vivo functional testing.

Results: TECs from multiple donors shared a common phenotype with increased expression of pathways related to extracellular matrix regulation, cell-cell communication, and insulin-like growth factor signaling that was conserved in comparison to hepatocellular carcinoma associated TECs, suggesting convergent TEC phenotypes between unrelated tumors. Cultured TECs stably maintained a core program of differentially regulated genes, were inherently resistant to apoptosis after vascular endothelial growth factor removal and displayed increased adhesiveness to subsets of immune cells including regulatory T-cells.

Conclusions: Our studies delineate unique functional and phenotypic properties of TECs, which may provide insights into their interactions with available and emerging therapies. Functional phenotypes of cultured TECs suggest potential mechanisms of resistance to both antiangiogenic and immune-based therapies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10659545PMC
http://dx.doi.org/10.21203/rs.3.rs-3558517/v1DOI Listing

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