Abstract Background The human endometrium in premenopausal women is an active site of physiological angiogenesis, with regenerative cells present, suggesting that the endometrium contains adult angiogenic stem cells. In the context of cardiac repair after ischemic injury, angiogenesis is a crucial process to rescue cardiomyocytes. We therefore investigated whether human endometrium-derived stem cells (hEMSCs) can be used for cardiac repair after ischemic injury and their possible underlying mechanisms. Methods Comparisons were made between hEMSCs successfully isolated from 22 premenopausal women and human bone marrow mesenchymal stem cells (hBMSCs) derived from 25 age-matched patients. Cell proliferation, migration, differentiation, and ang...
Background - Growth factors play an essential role in organogenesis. We examine the potential of gro...
Background: The human endometrium undergoes cyclical regeneration throughout a woman’s reproductive ...
Cardiac tissue engineering has the potential to develop regenerative therapies for damaged myocardiu...
Abstract Angiogenesis is a critical component of the proliferative endometrial phase of the menstrua...
The uterus is a unique organ equipped with unique cells that allow the tissue to undergo cyclical re...
Angiogenesis is a critical component of the proliferative endometrial phase of the menstrual cycle. ...
[[abstract]]Cardiovascular disease is the leading cause of death globally, and stem cell therapy rem...
The adult human heart has a minimal ability to regenerate myocardium. Therefore, loss of viable card...
Cardiovascular disease is the leading cause of death globally, and stem cell therapy remains one of ...
Recently stem cell therapy has suggested novel therapeutic strategies for management of heart failur...
BACKGROUND: The human endometrium undergoes cyclical regeneration throughout a woman's reproductive ...
Background: Autologous cells for cell therapy of ischemic cardiomyopathy often display age- and dise...
BACKGROUND: The adult mammalian heart retains residual regenerative capability via endogenous cardia...
Angiogenesis is a complicated process in which perivascular cells play important roles. Multipotent ...
It has been proposed the use of resident stem cells (SCs) for the repair of cardiac injuries. Howeve...
Background - Growth factors play an essential role in organogenesis. We examine the potential of gro...
Background: The human endometrium undergoes cyclical regeneration throughout a woman’s reproductive ...
Cardiac tissue engineering has the potential to develop regenerative therapies for damaged myocardiu...
Abstract Angiogenesis is a critical component of the proliferative endometrial phase of the menstrua...
The uterus is a unique organ equipped with unique cells that allow the tissue to undergo cyclical re...
Angiogenesis is a critical component of the proliferative endometrial phase of the menstrual cycle. ...
[[abstract]]Cardiovascular disease is the leading cause of death globally, and stem cell therapy rem...
The adult human heart has a minimal ability to regenerate myocardium. Therefore, loss of viable card...
Cardiovascular disease is the leading cause of death globally, and stem cell therapy remains one of ...
Recently stem cell therapy has suggested novel therapeutic strategies for management of heart failur...
BACKGROUND: The human endometrium undergoes cyclical regeneration throughout a woman's reproductive ...
Background: Autologous cells for cell therapy of ischemic cardiomyopathy often display age- and dise...
BACKGROUND: The adult mammalian heart retains residual regenerative capability via endogenous cardia...
Angiogenesis is a complicated process in which perivascular cells play important roles. Multipotent ...
It has been proposed the use of resident stem cells (SCs) for the repair of cardiac injuries. Howeve...
Background - Growth factors play an essential role in organogenesis. We examine the potential of gro...
Background: The human endometrium undergoes cyclical regeneration throughout a woman’s reproductive ...
Cardiac tissue engineering has the potential to develop regenerative therapies for damaged myocardiu...