Enhanced angiogenic potency of monocytic endothelial progenitor cells in patients with systemic sclerosis
Yukie Yamaguchi1, Yuka Okazaki, Noriyuki Seta
1Division of Rheumatology, Department of Internal Medicine, Keio University School of Medicine, 35 Shinanomachi, Shinjuku-ku, Tokyo 160-8582, Japan.
Introduction:
Microvasculopathy is one of the characteristic features in patients with systemic sclerosis (SSc), but underlying mechanisms still remain uncertain. In this study, we evaluated the potential involvement of monocytic endothelial progenitor cells (EPCs) in pathogenic processes of SSc vasculopathy, by determining their number and contribution to blood vessel formation through angiogenesis and vasculogenesis.
Methods:
Monocytic EPCs were enriched and enumerated using a culture of peripheral blood mononuclear cells and platelets on fibronectin in 23 patients with SSc, 22 patients with rheumatoid arthritis (RA), and 21 healthy controls. To assess the capacity of monocytic EPCs to promote vascular formation and the contribution of vasculogenesis to this process, we used an in vitro co-culture system with human umbilical vein endothelial cells (HUVECs) on Matrigel® and an in vivo murine tumor neovascularization model.
Results:
Monocytic EPCs were significantly increased in SSc patients than in RA patients or healthy controls (P = 0.01 for both comparisons). Monocytic EPCs derived from SSc patients promoted tubular formation in Matrigel® cultures more than those from healthy controls (P = 0.007). Transplantation of monocytic EPCs into immunodeficient mice resulted in promotion of tumor growth and blood vessel formation, and these properties were more prominent in SSc than healthy monocytic EPCs (P = 0.03 for both comparisons). In contrast, incorporation of SSc monocytic EPCs into the tubular structure was less efficient in vitro and in vivo, compared with healthy monocytic EPCs.
Conclusions:
SSc patients have high numbers of aberrant circulating monocytic EPCs that exert enhanced angiogenesis but are impaired in vasculogenesis. However, these cells apparently cannot overcome the anti-angiogenic environment that characterizes SSc-affected tissues.
Insights
Systemic sclerosis patients have increased monocytic endothelial progenitor cells (EPCs) that enhance blood vessel formation (angiogenesis) but impair vessel stabilization (vasculogenesis), contributing to SSc vasculopathy.
Area of Science:
- Cardiovascular Biology
- Immunology
- Rheumatology
Background:
- Microvasculopathy is a hallmark of systemic sclerosis (SSc), yet its underlying mechanisms remain unclear.
- This study investigates the role of monocytic endothelial progenitor cells (EPCs) in SSc vasculopathy.
- The research determined the number and function of monocytic EPCs in blood vessel formation.
Purpose of the Study:
- To evaluate the number and function of monocytic EPCs in systemic sclerosis (SSc).
- To assess the contribution of monocytic EPCs to angiogenesis and vasculogenesis in SSc.
- To elucidate the role of these cells in SSc-related microvasculopathy.
Main Methods:
- Monocytic EPCs were isolated and enumerated from peripheral blood of SSc patients, rheumatoid arthritis (RA) patients, and healthy controls.
- In vitro co-culture systems with human umbilical vein endothelial cells (HUVECs) on Matrigel® were used to assess EPCs' pro-angiogenic capacity.
- An in vivo murine tumor neovascularization model was employed to study EPC contribution to vascular formation.
Main Results:
- Monocytic EPCs were significantly increased in SSc patients compared to RA patients and healthy controls.
- SSc-derived monocytic EPCs exhibited enhanced tubular formation in vitro and promoted tumor growth and blood vessel formation in vivo.
- However, the incorporation of SSc monocytic EPCs into tubular structures was less efficient compared to healthy controls.
Conclusions:
- Systemic sclerosis patients possess elevated numbers of aberrant circulating monocytic EPCs.
- These cells demonstrate enhanced angiogenesis but impaired vasculogenesis, contributing to SSc vasculopathy.
- Despite enhanced angiogenesis, these aberrant EPCs may not overcome the anti-angiogenic tissue environment in SSc.
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