Related Experiment Video
Updated: Aug 12, 2025

Determining Genome-wide Transcript Decay Rates in Proliferating and Quiescent Human Fibroblasts
Published on: January 2, 2018
Human and murine fibroblast single-cell transcriptomics reveals fibroblast clusters are differentially affected by
Kim van Kuijk1,2, Ian R McCracken3, Renée J H A Tillie1
1Cardiovascular Research Institute Maastricht (CARIM), Maastricht University Medical Center, PO Box 5800, 6202 AZ Maastricht, The Netherlands.
Insights
We identified new fibroblast markers (PDGFRA, DPEP1) and revealed their diverse roles in cardiovascular diseases (CVDs). These findings highlight fibroblast heterogeneity and its link to CVD risk factors like hypercholesterolaemia and ageing.
Area of Science:
- Cardiovascular Biology
- Cellular Heterogeneity
- Fibroblast Biology
Background:
- Specific markers for adventitial fibroblasts are lacking, hindering functional studies in cardiovascular diseases (CVDs).
- Understanding fibroblast heterogeneity is crucial for investigating their role in CVD pathogenesis.
Purpose of the Study:
- To establish specific cell-type markers for adventitial fibroblasts.
- To analyze fibroblast heterogeneity in murine and human arteries.
- To investigate the adventitial fibroblast response to CVD and risk factors like hypercholesterolaemia and ageing.
Main Methods:
- Single-cell RNA-sequencing of murine aorta adventitial mesenchymal cells.
- Immunohistochemistry and flow cytometry for marker validation in human and murine arteries.
- Pseudotime and Gene Ontology (GO) analysis to identify fibroblast trajectories and functions.
- Analysis of fibroblast responses in aged and hypercholesterolaemic mouse models.
- Transcriptomic analysis of human carotid and aorta specimens.
Main Results:
- Identified PDGFRA and DPEP1 as specific fibroblast markers, distinct from vascular smooth muscle cells.
- Revealed three distinct fibroblast differentiation trajectories (CD55+, CXCL14+, LOX+).
- Demonstrated differential regulation of fibroblast clusters by ageing and hypercholesterolaemia in vivo.
- Observed expansion of CXCL14+ and LOX+ fibroblasts correlating with increased adventitial collagen.
- Confirmed the presence of CD55+, CXCL14+, and LOX+ fibroblasts in human atherosclerotic specimens.
Conclusions:
- PDGFRA and DPEP1 are reliable markers for adventitial fibroblasts.
- Fibroblast heterogeneity plays a significant role in cardiovascular health and disease.
- Fibroblast subpopulations are regulated by CVD risk factors and associated with human atherosclerotic plaque traits.
Aims:
Specific fibroblast markers and in-depth heterogeneity analysis are currently lacking, hindering functional studies in cardiovascular diseases (CVDs). Here, we established cell-type markers and heterogeneity in murine and human arteries and studied the adventitial fibroblast response to CVD and its risk factors hypercholesterolaemia and ageing.
Methods And Results:
Murine aorta single-cell RNA-sequencing analysis of adventitial mesenchymal cells identified fibroblast-specific markers. Immunohistochemistry and flow cytometry validated platelet-derived growth factor receptor alpha (PDGFRA) and dipeptidase 1 (DPEP1) across human and murine aorta, carotid, and femoral arteries, whereas traditional markers such as the cluster of differentiation (CD)90 and vimentin also marked transgelin+ vascular smooth muscle cells. Next, pseudotime analysis showed multiple fibroblast clusters differentiating along trajectories. Three trajectories, marked by CD55 (Cd55+), Cxcl chemokine 14 (Cxcl14+), and lysyl oxidase (Lox+), were reproduced in an independent RNA-seq dataset. Gene ontology (GO) analysis showed divergent functional profiles of the three trajectories, related to vascular development, antigen presentation, and/or collagen fibril organization, respectively. Trajectory-specific genes included significantly more genes with known genome-wide associations (GWAS) to CVD than expected by chance, implying a role in CVD. Indeed, differential regulation of fibroblast clusters by CVD risk factors was shown in the adventitia of aged C57BL/6J mice, and mildly hypercholesterolaemic LDLR KO mice on chow by flow cytometry. The expansion of collagen-related CXCL14+ and LOX+ fibroblasts in aged and hypercholesterolaemic aortic adventitia, respectively, coincided with increased adventitial collagen. Immunohistochemistry, bulk, and single-cell transcriptomics of human carotid and aorta specimens emphasized translational value as CD55+, CXCL14+ and LOX+ fibroblasts were observed in healthy and atherosclerotic specimens. Also, trajectory-specific gene sets are differentially correlated with human atherosclerotic plaque traits.
Conclusion:
We provide two adventitial fibroblast-specific markers, PDGFRA and DPEP1, and demonstrate fibroblast heterogeneity in health and CVD in humans and mice. Biological relevance is evident from the regulation of fibroblast clusters by age and hypercholesterolaemia in vivo, associations with human atherosclerotic plaque traits, and enrichment of genes with a GWAS for CVD.
Related Concept Videos
The Effect of Aging on Tissues
Introduction to Fibroblasts

