The aim of this study was to examine whether circadian rhythm disorders would influence angiogenesis and blood perfusion recovery in a mouse model of hind limb ischemia.
First-pass extracted concept
mouse hind limb ischemia model
Aliases
hind limb ischemia model
Evidence Snippets
Supporting Sources
Linked Claims
Jet-lag inhibits expression of Cry1 and Cry2 in local ischemic tissues despite ischemic injury-associated upregulation of clock genes.
Cry1 and Cry2 double-knockout mice show reduced capillary density and reduced blood perfusion recovery in hind limb ischemia.
The impaired angiogenesis and perfusion recovery under jet-lag are associated with downregulation of VEGF expression in local ischemic tissue and plasma.
Circadian rhythm disorder deteriorates reparative ischemia-induced angiogenesis, and maintenance of circadian rhythm is important for angiogenesis.
Jet-lag condition impairs reparative angiogenesis and blood perfusion recovery in mouse hind limb ischemia.