Introduction Endothelial colony-forming cells (ECFCs) significantly improve tissue repair by providing regeneration potential within injured cardiovascular tissue. However, ECFC transplantation into ischemic tissue exhibits limited therapeutic efficacy due to poor engraftment in vivo. We established an adequate ex vivo expansion protocol and identified novel modulators that enhance functional bioactivities of ECFCs. Methods To augment the regenerative potential of ECFCs, functional bioactivities of hypoxia-preconditioned ECFCs (hypo-ECFCs) were examined. Results Phosphorylations of the JAK2/STAT3 p...
Cardiovascular disease (CVD) comprises a range of major clinical cardiac and circulatory diseases, w...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
To grow more robust cardiac tissue for implantation in vivo, strategies to improve survival of impla...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
International audienceHuman endothelial colony-forming cells (ECFCs) represent a promising source of...
International audienceHuman endothelial colony-forming cells (ECFCs) represent a promising source of...
International audienceHuman endothelial colony-forming cells (ECFCs) represent a promising source of...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
OBJECTIVE: Cord blood-derived human endothelial colony-forming cells (ECFCs) bear a high proliferati...
Human endothelial colony-forming cells (ECFCs) represent a promising source of adult stem cells for ...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
Summary: Human endothelial colony-forming cells (ECFCs) represent a promising source of adult stem c...
ObjectivesThis study explored the novel strategy of hypoxic preconditioning of bone marrow mesenchym...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
Cardiovascular disease (CVD) comprises a range of major clinical cardiac and circulatory diseases, w...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
To grow more robust cardiac tissue for implantation in vivo, strategies to improve survival of impla...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
International audienceHuman endothelial colony-forming cells (ECFCs) represent a promising source of...
International audienceHuman endothelial colony-forming cells (ECFCs) represent a promising source of...
International audienceHuman endothelial colony-forming cells (ECFCs) represent a promising source of...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
OBJECTIVE: Cord blood-derived human endothelial colony-forming cells (ECFCs) bear a high proliferati...
Human endothelial colony-forming cells (ECFCs) represent a promising source of adult stem cells for ...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
Summary: Human endothelial colony-forming cells (ECFCs) represent a promising source of adult stem c...
ObjectivesThis study explored the novel strategy of hypoxic preconditioning of bone marrow mesenchym...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
Cardiovascular disease (CVD) comprises a range of major clinical cardiac and circulatory diseases, w...
Vascular homeostasis and regeneration in ischemic tissue relies on intrinsic competence of the tissu...
To grow more robust cardiac tissue for implantation in vivo, strategies to improve survival of impla...