Human amniotic epithelial cells (hAECs) are nontumorigenic, highly abundant, and low immunogenic and possess multipotent differentiation ability, which make them become ideal alternative stem cell source for regenerative medicine. Previous studies have demonstrated the therapeutic potential of hAECs in many tissue repairs. However, the therapeutic effect of hAECs on diabetic wound healing is still unknown. In this study, we injected hAECs intradermally around the full-thickness excisional skin wounds of db/db mice and found that hAECs significantly accelerated diabetic wound healing and granulation tissue formation. To explore the underlying mechanisms, we measured inflammation and neovascularization in diabetic wounds. hAECs could modulate...
Amnion cells derived from either amniotic fluid or the membrane under specific culturing conditions ...
Impaired repair of skin defects is a major complication of diabetes; yet, the pathophysiology of dia...
Although stem cells have attracted attention as a novel therapeutic solution for tissue regeneration...
Although human amniotic mesenchymal stem cells (AMMs) have been recognised as a promising stem cell ...
Although human amniotic mesenchymal stem cells (AMMs) have been recognised as a promising stem cell ...
Human amniotic mesenchymal cells (hAMTCs) possess interesting immunomodulatory properties, making th...
Aims/hypothesis: Impaired wound healing significantly impacts morbidity and mortality in diabetic pa...
Human amniotic mesenchymal cells (hAMTCs) possess interesting immunomodulatory properties, making th...
Objective: The purpose of this study was to determine whether amnion-derived cellular cytokine solut...
Non-healing foot ulcers are the most common cause of non-traumatic amputation and hospitalization am...
BACKGROUND:Post-traumatic large-surface or deep wounds often cannot progress to reepithelialisation ...
Aims/hypothesis: Impaired wound healing significantly impacts morbidity and mortality in diabetic pa...
(1) Background: Diabetes impairs angiogenesis and wound healing. Paracrine secretion from adipose st...
Introduction: Stem cell therapies have been investigated as potential treatment modalities for chron...
Post-traumatic large-surface or deep wounds often cannot progress to reepithelialisation because the...
Amnion cells derived from either amniotic fluid or the membrane under specific culturing conditions ...
Impaired repair of skin defects is a major complication of diabetes; yet, the pathophysiology of dia...
Although stem cells have attracted attention as a novel therapeutic solution for tissue regeneration...
Although human amniotic mesenchymal stem cells (AMMs) have been recognised as a promising stem cell ...
Although human amniotic mesenchymal stem cells (AMMs) have been recognised as a promising stem cell ...
Human amniotic mesenchymal cells (hAMTCs) possess interesting immunomodulatory properties, making th...
Aims/hypothesis: Impaired wound healing significantly impacts morbidity and mortality in diabetic pa...
Human amniotic mesenchymal cells (hAMTCs) possess interesting immunomodulatory properties, making th...
Objective: The purpose of this study was to determine whether amnion-derived cellular cytokine solut...
Non-healing foot ulcers are the most common cause of non-traumatic amputation and hospitalization am...
BACKGROUND:Post-traumatic large-surface or deep wounds often cannot progress to reepithelialisation ...
Aims/hypothesis: Impaired wound healing significantly impacts morbidity and mortality in diabetic pa...
(1) Background: Diabetes impairs angiogenesis and wound healing. Paracrine secretion from adipose st...
Introduction: Stem cell therapies have been investigated as potential treatment modalities for chron...
Post-traumatic large-surface or deep wounds often cannot progress to reepithelialisation because the...
Amnion cells derived from either amniotic fluid or the membrane under specific culturing conditions ...
Impaired repair of skin defects is a major complication of diabetes; yet, the pathophysiology of dia...
Although stem cells have attracted attention as a novel therapeutic solution for tissue regeneration...