Arteriovenous malformations (AVMs) are high-flow lesions directly connecting arteries and veins. In the brain, AVM rupture can cause seizures, stroke, and death. Patients with AVMs exhibit reduced coverage of the vessels by pericytes, the mural cells of microvascular capillaries; however, the mechanism underlying this pericyte reduction and its association with AVM pathogenesis remains unknown. Notch signaling has been proposed to regulate critical pericyte functions. We hypothesized that Notch signaling in pericytes is crucial to maintain pericyte homeostasis and prevent AVM formation. We inhibited Notch signaling specifically in perivascular cells and analyzed the vasculature of these mice. The retinal vessels of mice with deficient periv...
We investigated the role of Notch signaling in the vascular microenvironment, with particular attent...
Notch signaling is suggested to promote the development and maintenance of cerebral arteriovenous ma...
Abstract—The Notch signaling pathway is critical for cell fate determination during embryonic develo...
Pericytes regulate vessel stability and pericyte dysfunction contributes to retinopathies, stroke, a...
Arteriovenous (AV) malformation (AVM) is a devastating condition characterized by focal lesions of e...
Arteriovenous malformations (AVMs) are dangerous vascular lesions of largely unknown etiology. Thos...
The vasculature arborizes as an elegant system of branching arteries, veins, and capillaries. For ov...
The roles of the Notch pathway proteins in normal adult vascular physiology and the pathogenesis of ...
Objective: Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopath...
A role for the Notch signalling pathway in the formation of arteriovenous malformations during devel...
Notch signaling is an evolutionarily conserved, intercellular signaling mechanism that plays myriad ...
Arteriovenous malformations (AVMs) are tortuous vessels characterized by arteriovenous (AV) shunts, ...
Purpose.: Pericytes, the vascular cells that constitute the outer layer of capillaries, have been sh...
Vascular development and angiogenesis initially depend on endothelial tip cell invasion, which is fo...
Notch signaling is suggested to promote the development and maintenance of cerebral arteriovenous ma...
We investigated the role of Notch signaling in the vascular microenvironment, with particular attent...
Notch signaling is suggested to promote the development and maintenance of cerebral arteriovenous ma...
Abstract—The Notch signaling pathway is critical for cell fate determination during embryonic develo...
Pericytes regulate vessel stability and pericyte dysfunction contributes to retinopathies, stroke, a...
Arteriovenous (AV) malformation (AVM) is a devastating condition characterized by focal lesions of e...
Arteriovenous malformations (AVMs) are dangerous vascular lesions of largely unknown etiology. Thos...
The vasculature arborizes as an elegant system of branching arteries, veins, and capillaries. For ov...
The roles of the Notch pathway proteins in normal adult vascular physiology and the pathogenesis of ...
Objective: Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopath...
A role for the Notch signalling pathway in the formation of arteriovenous malformations during devel...
Notch signaling is an evolutionarily conserved, intercellular signaling mechanism that plays myriad ...
Arteriovenous malformations (AVMs) are tortuous vessels characterized by arteriovenous (AV) shunts, ...
Purpose.: Pericytes, the vascular cells that constitute the outer layer of capillaries, have been sh...
Vascular development and angiogenesis initially depend on endothelial tip cell invasion, which is fo...
Notch signaling is suggested to promote the development and maintenance of cerebral arteriovenous ma...
We investigated the role of Notch signaling in the vascular microenvironment, with particular attent...
Notch signaling is suggested to promote the development and maintenance of cerebral arteriovenous ma...
Abstract—The Notch signaling pathway is critical for cell fate determination during embryonic develo...