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Updated: May 9, 2026

Analysis of Extracellular Vesicle-Mediated Vascular Calcification Using In Vitro and In Vivo Models
Published on: January 27, 2023
A role for the endothelium in vascular calcification
Yucheng Yao1, Medet Jumabay, Albert Ly
1Division of Cardiology, David Geffen School of Medicine at UCLA, Los Angeles, CA 90095, USA. yyao@mednet.ucla.edu
Insights
The vascular endothelium can generate osteoprogenitor cells, contributing to vascular calcification in conditions like diabetes. This occurs through endothelial-mesenchymal transitions driven by bone morphogenetic protein (BMP) signaling.
Area of Science:
- Vascular Biology
- Cell Biology
- Regenerative Medicine
Background:
- Vascular calcification is a regulated process involving osteoprogenitor cells, complicating diseases like atherosclerosis and diabetes.
- The role of the vascular endothelium in supplying osteoprogenitor cells to calcific lesions remains unclear.
Purpose of the Study:
- To investigate if the vascular endothelium contributes osteoprogenitor cells to vascular calcification.
- To elucidate the mechanisms underlying endothelial contribution to vascular calcification.
Main Methods:
- Utilized two mouse models: matrix Gla protein (MGP)-deficient mice and Ins2Akita/+ diabetic mice.
- Employed immunostaining, fluorescence-activated cell sorting, and Tie2-Gfp transgenic lineage tracing.
- Investigated human aortic endothelial cells in vitro under conditions of MGP depletion, BMP, and high glucose.
Main Results:
- Enhanced bone morphogenetic protein (BMP) signaling stimulated endothelial-mesenchymal transitions, generating osteoprogenitor cells in both mouse models.
- Endothelial markers co-localized with multipotent and osteogenic markers in calcified arteries.
- MGP enhancement limited osteoprogenitor cell generation, and MGP-depleted human endothelial cells acquired multipotency and osteoinducibility.
Conclusions:
- The endothelium serves as a source of osteoprogenitor cells in vascular calcification associated with high BMP activation.
- Conditions like BMP-inhibitor deficiency and diabetes mellitus involve endothelial contribution to vascular calcification.
- Findings highlight a novel role for endothelium in vascular pathology, particularly in metabolic and degenerative diseases.
Rationale:
Vascular calcification is a regulated process that involves osteoprogenitor cells and frequently complicates common vascular disease, such as atherosclerosis and diabetic vasculopathy. However, it is not clear whether the vascular endothelium has a role in contributing osteoprogenitor cells to the calcific lesions.
Objective:
To determine whether the vascular endothelium contributes osteoprogenitor cells to vascular calcification.
Methods And Results:
In this study, we use 2 mouse models of vascular calcification, mice with gene deletion of matrix Gla protein, a bone morphogenetic protein (BMP)-inhibitor, and Ins2Akita/+ mice, a diabetes model. We show that enhanced BMP signaling in both types of mice stimulates the vascular endothelium to contribute osteoprogenitor cells to the vascular calcification. The enhanced BMP signaling results in endothelial-mesenchymal transitions and the emergence of multipotent cells, followed by osteoinduction. Endothelial markers colocalize with multipotent and osteogenic markers in calcified arteries by immunostaining and fluorescence-activated cell sorting. Lineage tracing using Tie2-Gfp transgenic mice supports an endothelial origin of the osteogenic cells. Enhancement of matrix Gla protein expression in Ins2Akita/+ mice, as mediated by an Mgp transgene, limits the generation of multipotent cells. Moreover, matrix Gla protein-depleted human aortic endothelial cells in vitro acquire multipotency rendering the cells susceptible to osteoinduction by BMP and high glucose.
Conclusions:
Our data suggest that the endothelium is a source of osteoprogenitor cells in vascular calcification that occurs in disorders with high BMP activation, such as deficiency of BMP-inhibitors and diabetes mellitus.
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