Dynamic molecular atlas of cardiac fibrosis at single-cell resolution shows CD248 in cardiac fibroblasts orchestrates interactions with immune cells

Nat Cardiovasc Res. 2025 Apr;4(4):380-396. doi: 10.1038/s44161-025-00617-1. Epub 2025 Mar 27.

Abstract

Post-injury remodeling is a complex process involving temporal specific cellular interactions in the injured tissue where the resident fibroblasts play multiple roles. Here, we performed single-cell and spatial transcriptome analysis in human and mouse infarcted hearts to dissect the molecular basis of these interactions. We identified a unique fibroblast subset with high CD248 expression, strongly associated with extracellular matrix remodeling. Genetic Cd248 deletion in fibroblasts mitigated cardiac fibrosis and dysfunction following ischemia/reperfusion. Mechanistically, CD248 stabilizes type I transforming growth factor beta receptor and thus upregulates fibroblast ACKR3 expression, leading to enhanced T cell retention. This CD248-mediated fibroblast-T cell interaction is required to sustain fibroblast activation and scar expansion. Disrupting this interaction using monoclonal antibody or chimeric antigen receptor T cell reduces T cell infiltration and consequently ameliorates cardiac fibrosis and dysfunction. Our findings reveal a CD248+ fibroblast subpopulation as a key regulator of immune-fibroblast cross-talk and a potential therapy to treat tissue fibrosis.

MeSH terms

  • Animals
  • Antigens, CD
  • Antigens, Neoplasm
  • Cell Communication*
  • Disease Models, Animal
  • Fibroblasts* / immunology
  • Fibroblasts* / metabolism
  • Fibroblasts* / pathology
  • Fibrosis
  • Gene Expression Profiling
  • Humans
  • Male
  • Mice
  • Mice, Inbred C57BL
  • Mice, Knockout
  • Myocardial Infarction* / genetics
  • Myocardial Infarction* / immunology
  • Myocardial Infarction* / metabolism
  • Myocardial Infarction* / pathology
  • Myocardium* / immunology
  • Myocardium* / metabolism
  • Myocardium* / pathology
  • Receptor, Transforming Growth Factor-beta Type I / genetics
  • Receptor, Transforming Growth Factor-beta Type I / metabolism
  • Signal Transduction
  • Signaling Lymphocytic Activation Molecule Family* / genetics
  • Signaling Lymphocytic Activation Molecule Family* / metabolism
  • Single-Cell Analysis*
  • T-Lymphocytes* / immunology
  • T-Lymphocytes* / metabolism
  • Transcriptome

Substances

  • CD248 protein, human
  • Signaling Lymphocytic Activation Molecule Family
  • Receptor, Transforming Growth Factor-beta Type I
  • Antigens, Neoplasm
  • Antigens, CD