Microvascular remodeling and wound healing: a role for pericytes

BM Dulmovits, IM Herman - The international journal of biochemistry & cell …, 2012 - Elsevier
BM Dulmovits, IM Herman
The international journal of biochemistry & cell biology, 2012Elsevier
Physiologic wound healing is highly dependent on the coordinated functions of vascular and
non-vascular cells. Resolution of tissue injury involves coagulation, inflammation, formation
of granulation tissue, remodeling and scarring. Angiogenesis, the growth of microvessels the
size of capillaries, is crucial for these processes, delivering blood-borne cells, nutrients and
oxygen to actively remodeling areas. Central to angiogenic induction and regulation is
microvascular remodeling, which is dependent upon capillary endothelial cell and pericyte …
Physiologic wound healing is highly dependent on the coordinated functions of vascular and non-vascular cells. Resolution of tissue injury involves coagulation, inflammation, formation of granulation tissue, remodeling and scarring. Angiogenesis, the growth of microvessels the size of capillaries, is crucial for these processes, delivering blood-borne cells, nutrients and oxygen to actively remodeling areas. Central to angiogenic induction and regulation is microvascular remodeling, which is dependent upon capillary endothelial cell and pericyte interactions. Despite our growing knowledge of pericyte–endothelial cell crosstalk, it is unclear how the interplay among pericytes, inflammatory cells, glia and connective tissue elements shape microvascular injury response. Here, we consider the relationships that pericytes form with the cellular effectors of healing in normal and diabetic environments, including repair following injury and vascular complications of diabetes, such as diabetic macular edema and proliferative diabetic retinopathy. In addition, pericytes and stem cells possessing “pericyte-like” characteristics are gaining considerable attention in experimental and clinical efforts aimed at promoting healing or eradicating ocular vascular proliferative disorders. As the origin, identification and characterization of microvascular pericyte progenitor populations remains somewhat ambiguous, the molecular markers, structural and functional characteristics of pericytes will be briefly reviewed.
Elsevier