Stroke is a leading cause of death and disability and new therapies are desperately needed. Given the complex nature of ischemic brain injury, it has been postulated that cell-based therapies may be useful. However, cell resources, invasive extraction procedures, immunological rejection, tumorigenesis and ethical challenges make it unlikely that many stem cell types could serve as a practical source for therapy. By contrast, these issues do not pertain to human amnion epithelial cells (hAECs), which are placenta-derived stem cells. We recently assessed the effects of systemically delivered hAECs on stroke outcome using four animal models of stroke. We demonstrated that when injected intravenously after ischemia onset, hAECs migrate preferen...
Amniotic fluid has been investigated as new cell source for stem cells in the development of future ...
No pharmacological intervention has been shown convincingly to improve neurological outcome in strok...
Objective: The mesenchymal stem cells derived from human amniotic membrane have the ability to secre...
Stroke is a leading cause of death and disability and new therapies are desperately needed. Given th...
Stroke is a leading cause of death and disability and new therapies are desperately needed. Given th...
Background and Purpose: Human amnion epithelial cells (hAECs) are nonimmunogenic, nontumorigenic, an...
Ischemic stroke is a debilitating disease for which there are currently no effective treatments besi...
BackgroundThere is increasing interest in stem cell therapy as another treatment modality in stroke,...
Background: There is increasing interest in stem cell therapy as another treatment modality in strok...
Systemic administration of human amnion epithelial cells (hAECs) was recently shown to reduce neurop...
Accumulating preclinical evidence suggests the use of amnion as a source of stem cells for investig...
Regenerative medicine is a new field primarily based on the concept of transplanting exogenous or st...
This article discusses possible applications of cells derived from human amniotic fluid in regenerat...
Neuro-inflammation plays a key role in the pathophysiology of brain infarction. Cell therapy offers ...
This review examines stem cells harvested from human amniotic fluid and considers their possible app...
Amniotic fluid has been investigated as new cell source for stem cells in the development of future ...
No pharmacological intervention has been shown convincingly to improve neurological outcome in strok...
Objective: The mesenchymal stem cells derived from human amniotic membrane have the ability to secre...
Stroke is a leading cause of death and disability and new therapies are desperately needed. Given th...
Stroke is a leading cause of death and disability and new therapies are desperately needed. Given th...
Background and Purpose: Human amnion epithelial cells (hAECs) are nonimmunogenic, nontumorigenic, an...
Ischemic stroke is a debilitating disease for which there are currently no effective treatments besi...
BackgroundThere is increasing interest in stem cell therapy as another treatment modality in stroke,...
Background: There is increasing interest in stem cell therapy as another treatment modality in strok...
Systemic administration of human amnion epithelial cells (hAECs) was recently shown to reduce neurop...
Accumulating preclinical evidence suggests the use of amnion as a source of stem cells for investig...
Regenerative medicine is a new field primarily based on the concept of transplanting exogenous or st...
This article discusses possible applications of cells derived from human amniotic fluid in regenerat...
Neuro-inflammation plays a key role in the pathophysiology of brain infarction. Cell therapy offers ...
This review examines stem cells harvested from human amniotic fluid and considers their possible app...
Amniotic fluid has been investigated as new cell source for stem cells in the development of future ...
No pharmacological intervention has been shown convincingly to improve neurological outcome in strok...
Objective: The mesenchymal stem cells derived from human amniotic membrane have the ability to secre...