RATIONALE: Optimization of cell therapy for cardiac repair may require the association of different cell populations with complementary activities.OBJECTIVE: Compare the reparative potential of saphenous vein-derived pericytes (SVPs) with that of cardiac stem cells (CSCs) in a model of myocardial infarction, and investigate whether combined cell transplantation provides further improvements.METHODS AND RESULTS: SVPs and CSCs were isolated from vein leftovers of coronary artery bypass graft surgery and discarded atrial specimens of transplanted hearts, respectively. Single or dual cell therapy (300 000 cells of each type per heart) was tested in infarcted SCID (severe combined immunodeficiency)-Beige mice. SVPs and CSCs alone improved cardia...
Kumar, ArunThe burden of cardiovascular disease around the world is growing, despite improvements in...
Because current treatments have had limited success in reducing morbidity and mortality associated w...
Bone marrow (BM) stem cells can differentiate into multiple cell types, including vascular cells and...
Rationale: Optimization of cell therapy for cardiac repair may require the association of different ...
Blood-derived circulatory angiogenic cells (CACs) and resident cardiac stem cells (CSCs) have both b...
Rationale: Pericytes are key regulators of vascular maturation, but their value for cardiac repair r...
Objective: Stem cell therapy can facilitate cardiac repair in infarcted myocardium, but the optimal ...
Aims: Cardiovascular diseases caused by loss of functional cardiomyocytes (CMs) are a major cause of...
Induced pluripotent stem cell-derived cardiomyocytes (iPS-CMs) represent an attractive resource for ...
Pericytes are key regulators of vascular maturation, but their value for cardiac repair remains unkn...
Background: Stem cell therapy can facilitate cardiac repair after healed myocardial infarction but t...
ObjectiveWe hypothesized that implantation of adult mesenchymal stem cells after acute myocardial in...
Objectives: In the previous study, although it has been shown that intramyocardial injection of huma...
Heart regeneration via stem cell therapy could improve the functional outcome for millions of patien...
Rationale: Multiple biological mechanisms contribute to the efficacy of cardiac cell therapy. Most p...
Kumar, ArunThe burden of cardiovascular disease around the world is growing, despite improvements in...
Because current treatments have had limited success in reducing morbidity and mortality associated w...
Bone marrow (BM) stem cells can differentiate into multiple cell types, including vascular cells and...
Rationale: Optimization of cell therapy for cardiac repair may require the association of different ...
Blood-derived circulatory angiogenic cells (CACs) and resident cardiac stem cells (CSCs) have both b...
Rationale: Pericytes are key regulators of vascular maturation, but their value for cardiac repair r...
Objective: Stem cell therapy can facilitate cardiac repair in infarcted myocardium, but the optimal ...
Aims: Cardiovascular diseases caused by loss of functional cardiomyocytes (CMs) are a major cause of...
Induced pluripotent stem cell-derived cardiomyocytes (iPS-CMs) represent an attractive resource for ...
Pericytes are key regulators of vascular maturation, but their value for cardiac repair remains unkn...
Background: Stem cell therapy can facilitate cardiac repair after healed myocardial infarction but t...
ObjectiveWe hypothesized that implantation of adult mesenchymal stem cells after acute myocardial in...
Objectives: In the previous study, although it has been shown that intramyocardial injection of huma...
Heart regeneration via stem cell therapy could improve the functional outcome for millions of patien...
Rationale: Multiple biological mechanisms contribute to the efficacy of cardiac cell therapy. Most p...
Kumar, ArunThe burden of cardiovascular disease around the world is growing, despite improvements in...
Because current treatments have had limited success in reducing morbidity and mortality associated w...
Bone marrow (BM) stem cells can differentiate into multiple cell types, including vascular cells and...