The establishment of a fully functional blood vascular system requires elaborate angiogenic and vascular maturation events in order to fulfill organ-specific anatomical and physiological needs. Although vascular mural cells, i.e. pericytes and vascular smooth muscle cells, are known to play fundamental roles during these processes, their characteristics during vascular development remain incompletely understood. In this report, we utilized transgenic reporter mice in which mural cells are genetically labeled to examine developing vascular mural cells in the central nervous system (CNS). We found platelet-derived growth factor receptor beta gene (Pdgfrb)-driven EGFP reporter expression as a suitable marker for vascular mural cells at the ear...
SummaryMural cells (pericytes and vascular smooth muscle cells) provide trophic and structural suppo...
Brain arteriovenous malformation (bAVM) is the most common cause of intracranial hemorrhage (ICH), p...
<p>Microvessels and pericytes in COSC were immunolabelled with different vascular markers (CD105, Cl...
The establishment of a fully functional blood vascular system requires elaborate angiogenic and vasc...
Pericytes, the mural cells of blood microvessels, regulate microvascular development and function an...
Pericytes are essential for normal brain function, but many aspects of their physiology remain enigm...
Pericytes regulate key neurovascular functions of the brain. Studies in pericyte-deficient transgeni...
Mural cells (smooth muscle cells and pericytes) are integral components of brain blood vessels that ...
In order to better understand the process of angiogenesis in the developing human brain, we have exa...
A key question in vascular biology is how the diversity of origin of vascular mural cells, namely sm...
Pericytes and smooth muscle cells are integral components of the brain microvasculature. However, no...
In the post-natal mammalian brain perivascular astrocytes (PAs) ensheath blood vessels to regulate t...
Blood vessel growth is a fundamental process for organ development and wound healing but is also ass...
Abstract—Mural cells are essential components of blood vessels and are necessary for normal developm...
The association of pericytes (PCs) to newly formed blood vessels has been suggested to regulate endo...
SummaryMural cells (pericytes and vascular smooth muscle cells) provide trophic and structural suppo...
Brain arteriovenous malformation (bAVM) is the most common cause of intracranial hemorrhage (ICH), p...
<p>Microvessels and pericytes in COSC were immunolabelled with different vascular markers (CD105, Cl...
The establishment of a fully functional blood vascular system requires elaborate angiogenic and vasc...
Pericytes, the mural cells of blood microvessels, regulate microvascular development and function an...
Pericytes are essential for normal brain function, but many aspects of their physiology remain enigm...
Pericytes regulate key neurovascular functions of the brain. Studies in pericyte-deficient transgeni...
Mural cells (smooth muscle cells and pericytes) are integral components of brain blood vessels that ...
In order to better understand the process of angiogenesis in the developing human brain, we have exa...
A key question in vascular biology is how the diversity of origin of vascular mural cells, namely sm...
Pericytes and smooth muscle cells are integral components of the brain microvasculature. However, no...
In the post-natal mammalian brain perivascular astrocytes (PAs) ensheath blood vessels to regulate t...
Blood vessel growth is a fundamental process for organ development and wound healing but is also ass...
Abstract—Mural cells are essential components of blood vessels and are necessary for normal developm...
The association of pericytes (PCs) to newly formed blood vessels has been suggested to regulate endo...
SummaryMural cells (pericytes and vascular smooth muscle cells) provide trophic and structural suppo...
Brain arteriovenous malformation (bAVM) is the most common cause of intracranial hemorrhage (ICH), p...
<p>Microvessels and pericytes in COSC were immunolabelled with different vascular markers (CD105, Cl...