A key question in vascular biology is how the diversity of origin of vascular mural cells, namely smooth muscle cells (SMCs) and pericytes influences vessel properties, in particular the regional propensity to vascular diseases. This review therefore first describes the role and regulation of mural cells during vascular formation, with a focus on embryonic origin. We then consider the evidence that connects heterogeneities in SMC and pericyte origins with disease. Since this idea has major implications for understanding and modelling human disease, then there is a pressing need for new model systems to investigate mural cell development and the consequences of heterogeneity. Recent advances arising from in vitro strategies for deriving mura...
The vascular wall is comprised of distinct layers controlling angiogenesis, blood flow, vessel ancho...
During embryonic development, endothelial cells (ECs) undergo vasculogenesis to form a primitive ple...
Intimal accumulation of smooth muscle cells contributes to the development and progression of athero...
Development and maturation of the nascent cardiovascular system requires the recruitment of mural ce...
Development and maturation of the nascent cardiovascular system requires the recruitment of mural ce...
BACKGROUND: Blood vessels comprise endothelial cells, mural cells (pericytes/vascular smooth muscle ...
Vascular smooth muscle cells (VSMCs), a highly mosaic tissue, arise from multiple distinct embr...
Previously considered passive support cells, mural cells—pericytes and vascular smooth muscle cells—...
Mural cells are indispensable for the development and maintenance of healthy mature vasculature, val...
UNLABELLED: Vascular smooth muscle cells (SMCs) from distinct anatomic locations derive from differe...
Embryonic origins of human vascular smooth muscle cells: implications for in vitro modeling and clin...
<div><p>Mural cells of the vascular system include vascular smooth muscle cells (SMCs) and pericytes...
Vascular networks are comprised of endothelial cells and mural cells, which include pericytes and sm...
The developmental origin of vascular smooth muscle cells (VSMCs) has been increasingly recognized as...
The establishment of a fully functional blood vascular system requires elaborate angiogenic and vasc...
The vascular wall is comprised of distinct layers controlling angiogenesis, blood flow, vessel ancho...
During embryonic development, endothelial cells (ECs) undergo vasculogenesis to form a primitive ple...
Intimal accumulation of smooth muscle cells contributes to the development and progression of athero...
Development and maturation of the nascent cardiovascular system requires the recruitment of mural ce...
Development and maturation of the nascent cardiovascular system requires the recruitment of mural ce...
BACKGROUND: Blood vessels comprise endothelial cells, mural cells (pericytes/vascular smooth muscle ...
Vascular smooth muscle cells (VSMCs), a highly mosaic tissue, arise from multiple distinct embr...
Previously considered passive support cells, mural cells—pericytes and vascular smooth muscle cells—...
Mural cells are indispensable for the development and maintenance of healthy mature vasculature, val...
UNLABELLED: Vascular smooth muscle cells (SMCs) from distinct anatomic locations derive from differe...
Embryonic origins of human vascular smooth muscle cells: implications for in vitro modeling and clin...
<div><p>Mural cells of the vascular system include vascular smooth muscle cells (SMCs) and pericytes...
Vascular networks are comprised of endothelial cells and mural cells, which include pericytes and sm...
The developmental origin of vascular smooth muscle cells (VSMCs) has been increasingly recognized as...
The establishment of a fully functional blood vascular system requires elaborate angiogenic and vasc...
The vascular wall is comprised of distinct layers controlling angiogenesis, blood flow, vessel ancho...
During embryonic development, endothelial cells (ECs) undergo vasculogenesis to form a primitive ple...
Intimal accumulation of smooth muscle cells contributes to the development and progression of athero...