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Updated: Apr 28, 2026

Differentiation Capacity of Human Aortic Perivascular Adipose Progenitor Cells
Published on: March 5, 2019
Characterization of a resident population of adventitial macrophage progenitor cells in postnatal vasculature
Peter J Psaltis1, Amrutesh S Puranik1, Daniel B Spoon1
1From the Division of Cardiovascular Diseases, Mayo Clinic, Rochester, MN (P.J.P., A.S.P., D.B.S., C.D.C., S.J.H., T.A.W., S.D., L.S.K., C.S.M., S.P., R.G., R.D.S.); Monash Cardiovascular Research Centre, Monash University, Clayton, Victoria, Australia (P.J.P.); Department of Medicine, University of Adelaide, Adelaide, South Australia, Australia (P.J.P., S.D.); and Kansas University Medical Center, The University of Kansas, Kansas City (R.D.S).
Rationale:
Macrophages regulate blood vessel structure and function in health and disease. The origins of tissue macrophages are diverse, with evidence for local production and circulatory renewal.
Objective:
We identified a vascular adventitial population containing macrophage progenitor cells and investigated their origins and fate.
Methods And Results:
Single-cell disaggregates from adult C57BL/6 mice were prepared from different tissues and tested for their capacity to form hematopoietic colony-forming units. Aorta showed a unique predilection for generating macrophage colony-forming units. Aortic macrophage colony-forming unit progenitors coexpressed stem cell antigen-1 and CD45 and were adventitially located, where they were the predominant source of proliferating cells in the aortic wall. Aortic Sca-1(+)CD45(+) cells were transcriptionally and phenotypically distinct from neighboring cells lacking stem cell antigen-1 or CD45 and contained a proliferative (Ki67(+)) Lin(-)c-Kit(+)CD135(-)CD115(+)CX3CR1(+)Ly6C(+)CD11b(-) subpopulation, consistent with the immunophenotypic profile of macrophage progenitors. Adoptive transfer studies revealed that Sca-1(+)CD45(+) adventitial macrophage progenitor cells were not replenished via the circulation from bone marrow or spleen, nor was their prevalence diminished by depletion of monocytes or macrophages by liposomal clodronate treatment or genetic deficiency of macrophage colony-stimulating factor. Rather adventitial macrophage progenitor cells were upregulated in hyperlipidemic ApoE(-/-) and LDL-R(-/-) mice, with adventitial transfer experiments demonstrating their durable contribution to macrophage progeny particularly in the adventitia, and to a lesser extent the atheroma, of atherosclerotic carotid arteries.
Conclusions:
The discovery and characterization of resident vascular adventitial macrophage progenitor cells provides new insight into adventitial biology and its participation in atherosclerosis and provokes consideration of the broader existence of local macrophage progenitors in other tissues.
Insights
Researchers discovered macrophage progenitor cells in the vascular adventitia. These cells are a local source for macrophages, particularly contributing to atherosclerosis.
Area of Science:
- Vascular Biology
- Immunology
- Cell Biology
Background:
- Macrophages are crucial for blood vessel regulation in health and disease.
- Tissue macrophage origins are diverse, involving local production and circulatory sources.
Purpose of the Study:
- Identify and characterize macrophage progenitor cells within the vascular adventitia.
- Investigate the origin and fate of these adventitial progenitor cells.
Main Methods:
- Single-cell analysis of mouse tissues to identify hematopoietic colony-forming units.
- Co-expression analysis of stem cell antigen-1 (Sca-1) and CD45 on aortic progenitors.
- Adoptive transfer and depletion studies to trace progenitor cell origins and fate.
Main Results:
- Aorta harbors a unique adventitial population of Sca-1(+)CD45(+) macrophage progenitor cells.
- These progenitors are transcriptionally and phenotypically distinct and are the primary proliferating cells in the aortic wall.
- Adventitial progenitors are self-renewing, not replenished from bone marrow or spleen, and contribute to atherosclerosis in hyperlipidemic models.
Conclusions:
- Discovery of resident vascular adventitial macrophage progenitor cells offers new insights into adventitial biology.
- These cells play a role in atherosclerosis development.
- Suggests the potential existence of local macrophage progenitors in other tissues.
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