Pericytes are perivascular multipotent cells located on capillaries. Although pericytes are discovered in the nineteenth century, recent studies have found that pericytes play an important role in maintaining the blood—brain barrier (BBB) and regulating the neurovascular system. In the neurovascular unit, pericytes perform their functions by coordinating the crosstalk between endothelial, glial, and neuronal cells. Dysfunction of pericytes can lead to a variety of diseases, including stroke and other neurological disorders. Recent studies have suggested that pericytes can serve as a therapeutic target in ischemic stroke. In this review, we first summarize the biology and functions of pericytes in the central nervous system. Then, we focus o...
Pericytes, spatially-isolated contractile cells on capillaries, have been reported to contro...
Pericytes, the mural cells surrounding microcirculation, are gaining increasing attention for their ...
Neurons are extremely vulnerable cells that tightly rely on the brain’s highly dynamic and complex v...
Pericytes are multi-functional cells embedded within the walls of capillaries throughout the body, i...
Ischemic stroke remains one of the leading causes of death and disability worldwide, and its burden ...
Pericytes play an indispensable role in various organs and biological processes, such as promoting a...
Stroke is the number one leading cause of adult disability in the US. While medical intervention has...
Pericytes are a previously understudied, but crucial cell type of the vessel wall. In the brain, per...
Abstract: Neurons are extremely vulnerable cells that tightly rely on the brain’s highly dynamic and...
Pericytes are mural cells surrounding blood vessels, adjacent to endothelial cells. Pericytes play c...
The pericyte, a constitutive component of the central nervous system, is a poorly understood cell ty...
Abstract—Brain pericytes are intimately associated with capillary endothelial cells, separated only ...
Pericytes in the brain are candidate regulators of microcirculatory blood flow because they are stra...
The biology of brain microvascular pericytes is an active area of research and discovery, as their i...
Ischaemic stroke is a major global cause of disability and death, yet thetherapeutic options current...
Pericytes, spatially-isolated contractile cells on capillaries, have been reported to contro...
Pericytes, the mural cells surrounding microcirculation, are gaining increasing attention for their ...
Neurons are extremely vulnerable cells that tightly rely on the brain’s highly dynamic and complex v...
Pericytes are multi-functional cells embedded within the walls of capillaries throughout the body, i...
Ischemic stroke remains one of the leading causes of death and disability worldwide, and its burden ...
Pericytes play an indispensable role in various organs and biological processes, such as promoting a...
Stroke is the number one leading cause of adult disability in the US. While medical intervention has...
Pericytes are a previously understudied, but crucial cell type of the vessel wall. In the brain, per...
Abstract: Neurons are extremely vulnerable cells that tightly rely on the brain’s highly dynamic and...
Pericytes are mural cells surrounding blood vessels, adjacent to endothelial cells. Pericytes play c...
The pericyte, a constitutive component of the central nervous system, is a poorly understood cell ty...
Abstract—Brain pericytes are intimately associated with capillary endothelial cells, separated only ...
Pericytes in the brain are candidate regulators of microcirculatory blood flow because they are stra...
The biology of brain microvascular pericytes is an active area of research and discovery, as their i...
Ischaemic stroke is a major global cause of disability and death, yet thetherapeutic options current...
Pericytes, spatially-isolated contractile cells on capillaries, have been reported to contro...
Pericytes, the mural cells surrounding microcirculation, are gaining increasing attention for their ...
Neurons are extremely vulnerable cells that tightly rely on the brain’s highly dynamic and complex v...