The brain needs sufficient oxygen in order to function normally. This is achieved by a large vascular capillary network ensuring that oxygen supply meets the changing demand of the brain tissue, especially in situations of hypoxia. Brain capillaries are formed by endothelial cells and perivascular pericytes, whereby pericytes in the brain have a particularly high 1:1 ratio to endothelial cells. Pericytes not only have a key location at the blood/brain interface, they also have multiple functions, for example, they maintain blood–brain barrier integrity, play an important role in angiogenesis and have large secretory abilities. This review is specifically focused on both the cellular and the molecular responses of brain pericytes to hypoxia....
Brain pericytes reside on the abluminal surface of capillaries, and their processes cover similar to...
In the capillary walls, vascular endothelial cells are covered with mural cells, such as smooth musc...
International audienceUsing a cell culture model of the blood-brain barrier (BBB), we investigated t...
Adaptive biological mechanisms to hypoxia are crucial to maintain oxygen homeostasis, especially in ...
Brain pericytes are important to maintain vascular integrity of the neurovascular unit under both ph...
Pericytes are located on the abluminal side of endothelial cells lining the microvasculature in all ...
Brain pericytes are important to maintain vascular integrity of the neurovascular unit under both ph...
Background: Undisturbed functioning of the blood–brain barrier (BBB) crucially depends on paracellul...
Background: Ways to prevent disease-induced vascular modifcations that accelerate brain damage remai...
The blood-brain barrier (BBB) is a complex vascular structure consisting of microvascular endothelia...
Background and Purpose- In ischemic stroke, breakdown of the blood-brain barrier (BBB) aggravates br...
The pericyte, a constitutive component of the central nervous system, is a poorly understood cell ty...
Pericytes play essential roles in blood-brain barrier integrity and their dysfunction is implicated ...
Pericytes, which are embedded in the basement membrane of the capillary wall, play important roles i...
Pericytes in the brain are candidate regulators of microcirculatory blood flow because they are stra...
Brain pericytes reside on the abluminal surface of capillaries, and their processes cover similar to...
In the capillary walls, vascular endothelial cells are covered with mural cells, such as smooth musc...
International audienceUsing a cell culture model of the blood-brain barrier (BBB), we investigated t...
Adaptive biological mechanisms to hypoxia are crucial to maintain oxygen homeostasis, especially in ...
Brain pericytes are important to maintain vascular integrity of the neurovascular unit under both ph...
Pericytes are located on the abluminal side of endothelial cells lining the microvasculature in all ...
Brain pericytes are important to maintain vascular integrity of the neurovascular unit under both ph...
Background: Undisturbed functioning of the blood–brain barrier (BBB) crucially depends on paracellul...
Background: Ways to prevent disease-induced vascular modifcations that accelerate brain damage remai...
The blood-brain barrier (BBB) is a complex vascular structure consisting of microvascular endothelia...
Background and Purpose- In ischemic stroke, breakdown of the blood-brain barrier (BBB) aggravates br...
The pericyte, a constitutive component of the central nervous system, is a poorly understood cell ty...
Pericytes play essential roles in blood-brain barrier integrity and their dysfunction is implicated ...
Pericytes, which are embedded in the basement membrane of the capillary wall, play important roles i...
Pericytes in the brain are candidate regulators of microcirculatory blood flow because they are stra...
Brain pericytes reside on the abluminal surface of capillaries, and their processes cover similar to...
In the capillary walls, vascular endothelial cells are covered with mural cells, such as smooth musc...
International audienceUsing a cell culture model of the blood-brain barrier (BBB), we investigated t...