Pericytes (PCs) have been recognized for a long time only as structural cells of the blood vessels. The identification of tight contacts with endothelial cells and the ability to interact with surrounding cells through paracrine signaling revealed additional functions of PCs in maintaining the homeostasis of the perivascular environment. PCs got the front page, in the late 1990s, after the identification and characterization of a new embryonic cell population, the mesoangioblasts, from which PCs present in the adult organism are thought to derive. From these studies, it was clear that PCs were also endowed with multipotent mesodermal abilities. Furthermore, their ability to cross the vascular wall and to reconstitute skeletal muscle tissue ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Multi-potent mesenchymal stem/progenitor cells are present in almost all organs and tissues, althoug...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Pericytes (PCs) have been recognized for a long time only as structural cells of the blood vessels. ...
Pericytes (PCs) have been recognized for a long time only as structural cells of the blood vessels. ...
Increasing attention is currently devoted to the multiple roles that pericytes (also defined as mura...
Increasing attention is currently devoted to the multiple roles that pericytes (also defined as mura...
Microvascular pericytes (PCs) are considered the adult counterpart of the embryonic mesoangioblasts,...
Pericyte recruitment is essential for the stability of newly formed vessels. It was also suggested t...
Perivascular cells have been identified as in vivo progenitors of mesenchymal stem cells (MSCs), th...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Multi-potent mesenchymal stem/progenitor cells are present in almost all organs and tissues, althoug...
Multi-potent mesenchymal stem/progenitor cells are present in almost all organs and tissues, althoug...
Multi-potent mesenchymal stem/progenitor cells are present in almost all organs and tissues, althoug...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Multi-potent mesenchymal stem/progenitor cells are present in almost all organs and tissues, althoug...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Pericytes (PCs) have been recognized for a long time only as structural cells of the blood vessels. ...
Pericytes (PCs) have been recognized for a long time only as structural cells of the blood vessels. ...
Increasing attention is currently devoted to the multiple roles that pericytes (also defined as mura...
Increasing attention is currently devoted to the multiple roles that pericytes (also defined as mura...
Microvascular pericytes (PCs) are considered the adult counterpart of the embryonic mesoangioblasts,...
Pericyte recruitment is essential for the stability of newly formed vessels. It was also suggested t...
Perivascular cells have been identified as in vivo progenitors of mesenchymal stem cells (MSCs), th...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Multi-potent mesenchymal stem/progenitor cells are present in almost all organs and tissues, althoug...
Multi-potent mesenchymal stem/progenitor cells are present in almost all organs and tissues, althoug...
Multi-potent mesenchymal stem/progenitor cells are present in almost all organs and tissues, althoug...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Multi-potent mesenchymal stem/progenitor cells are present in almost all organs and tissues, althoug...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...