Pericytes in the brain are candidate regulators of microcirculatory blood flow because they are strategically positioned along the microvasculature, contain contractile proteins, respond rapidly to neuronal activation, and synchronize microvascular dynamics and neurovascular coupling within the capillary network. Analyses of mice with defects in pericyte generation demonstrate that pericytes are necessary for the formation of the blood-brain barrier, development of the glymphatic system, immune homeostasis, and white matter function. The development, identity, specialization, and progeny of different subtypes of pericytes, however, remain unclear. Pericytes perform brain-wide ‘transportation engineering’ functions in the capillary network, ...
Pericytes, spatially-isolated contractile cells on capillaries, have been reported to contro...
Abstract The French scientist Charles Benjamin Rouget identified the pericyte nearly 140 years ago. ...
Pericytes, spatially isolated contractile cells on capillaries, have been reported to control cerebr...
In the capillary walls, vascular endothelial cells are covered with mural cells, such as smooth musc...
Pericytes are multi-functional cells embedded within the walls of capillaries throughout the body, i...
Pericytes, the mural cells surrounding microcirculation, are gaining increasing attention for their ...
Abstract—Brain pericytes are intimately associated with capillary endothelial cells, separated only ...
Neurons are extremely vulnerable cells that tightly rely on the brain’s highly dynamic and complex v...
Abstract: Neurons are extremely vulnerable cells that tightly rely on the brain’s highly dynamic and...
Successful neuroprotection is only possible with contemporary microvascular protection. The preventi...
Pericytes are the perivascular mural cells of microvessels. They are intimately associated with end...
SummaryPericytes play a key role in the development of cerebral microcirculation. The exact role of ...
Pericytes play an indispensable role in various organs and biological processes, such as promoting a...
Pericytes are mural cells surrounding blood vessels, adjacent to endothelial cells. Pericytes play c...
Pericytes regulate the development of organ-specific characteristics of the brain vasculature such a...
Pericytes, spatially-isolated contractile cells on capillaries, have been reported to contro...
Abstract The French scientist Charles Benjamin Rouget identified the pericyte nearly 140 years ago. ...
Pericytes, spatially isolated contractile cells on capillaries, have been reported to control cerebr...
In the capillary walls, vascular endothelial cells are covered with mural cells, such as smooth musc...
Pericytes are multi-functional cells embedded within the walls of capillaries throughout the body, i...
Pericytes, the mural cells surrounding microcirculation, are gaining increasing attention for their ...
Abstract—Brain pericytes are intimately associated with capillary endothelial cells, separated only ...
Neurons are extremely vulnerable cells that tightly rely on the brain’s highly dynamic and complex v...
Abstract: Neurons are extremely vulnerable cells that tightly rely on the brain’s highly dynamic and...
Successful neuroprotection is only possible with contemporary microvascular protection. The preventi...
Pericytes are the perivascular mural cells of microvessels. They are intimately associated with end...
SummaryPericytes play a key role in the development of cerebral microcirculation. The exact role of ...
Pericytes play an indispensable role in various organs and biological processes, such as promoting a...
Pericytes are mural cells surrounding blood vessels, adjacent to endothelial cells. Pericytes play c...
Pericytes regulate the development of organ-specific characteristics of the brain vasculature such a...
Pericytes, spatially-isolated contractile cells on capillaries, have been reported to contro...
Abstract The French scientist Charles Benjamin Rouget identified the pericyte nearly 140 years ago. ...
Pericytes, spatially isolated contractile cells on capillaries, have been reported to control cerebr...