In this study, we tissue-engineered heart valves in vivo using autologous bone marrow-derived cells (BMCs). Canine BMCs were differentiated into endothelial cell (EC)-like cells and myofibroblast (MF)-like cells. Decellularized porcine pulmonary valves were seeded with BMCs and implanted to abdominal aorta and pulmonary valve of bone marrow donor dogs. Histological examination of the explants identified the regeneration of valvular structures expressing CD31 and smooth muscle α-actin, indicating the presence of EC-like and MF-like cells in the grafts at 3 and 1 week, respectively, after implantation. Fluorescent microscopic examinations identified the presence of fluorescently labeled cells in the explants, indicating that the implanted BMC...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
BACKGROUND: Previous tissue engineering approaches to create heart valves have been limited by the s...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
Calcification risk and immune response are reduced after cardiac valve decellulariztion and subseque...
The potential for in vitro colonization of decellularized valves by human bone marrow mesenchymal st...
To increase the biocompatibility and durability of glutaraldehyde (GA)-fixed valves, a biological co...
Human vascular cells from saphenous veins have been used for cell seeding on the synthetic scaffolds...
Human vascular cells from saphenous veins have been used for cell seeding on the synthetic scaffolds...
Cardiac valve replacement is the second most common heart operation in the Western World. Valve repl...
Background and aim of the study: The adult human heart contains a cardiac mesenchymal stromal cell (...
Valvular heart disease is still a significant cause of morbidity and mortality worldwide. Clinically...
ObjectivesThis study sought to investigate the combination of transcatheter aortic valve implantatio...
Purposes: We investigated whether circulating endothelial progenitor cells (EPCs) can be used as a c...
Background: Heart valve tissue engineering represents a concept for improving the current methods of...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
BACKGROUND: Previous tissue engineering approaches to create heart valves have been limited by the s...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
Calcification risk and immune response are reduced after cardiac valve decellulariztion and subseque...
The potential for in vitro colonization of decellularized valves by human bone marrow mesenchymal st...
To increase the biocompatibility and durability of glutaraldehyde (GA)-fixed valves, a biological co...
Human vascular cells from saphenous veins have been used for cell seeding on the synthetic scaffolds...
Human vascular cells from saphenous veins have been used for cell seeding on the synthetic scaffolds...
Cardiac valve replacement is the second most common heart operation in the Western World. Valve repl...
Background and aim of the study: The adult human heart contains a cardiac mesenchymal stromal cell (...
Valvular heart disease is still a significant cause of morbidity and mortality worldwide. Clinically...
ObjectivesThis study sought to investigate the combination of transcatheter aortic valve implantatio...
Purposes: We investigated whether circulating endothelial progenitor cells (EPCs) can be used as a c...
Background: Heart valve tissue engineering represents a concept for improving the current methods of...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
BACKGROUND: Previous tissue engineering approaches to create heart valves have been limited by the s...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...