ObjectiveBone marrow stem cells, especially the mesenchymal stem cell subpopulation, have been used to create in vitro tissue-engineered heart valves. We hypothesized that autologous bone marrow cells, injected in a decellularized porcine scaffold before surgical implantation, could promote in vivo recolonization and limit valve deterioration. We thus analyzed the effects of in situ injection of autologous bone marrow mononuclear cells and of mesenchymal stem cells on the outcome of xenogenic decellularized scaffolds in a lamb model.MethodsDecellularized porcine pulmonary valves were implanted in the pulmonary artery under cardiopulmonary bypass in 14 lambs after injection in the scaffold of autologous bone marrow mononuclear cells (BMMC) g...
ObjectiveMechanical and biological prostheses are used to replace damaged heart valves but are assoc...
In this study, we tissue-engineered heart valves in vivo using autologous bone marrow-derived cells ...
ObjectivesThe aim of this study was to demonstrate the feasibility of combining the novel heart valv...
BackgroundAutologous recellularization of decellularized heart valve scaffolds is a promising challe...
Current research on valvular heart repair has focused on tissue-engineered heart valves (TEHV) becau...
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 ...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
Cardiac valve replacement is the second most common heart operation in the Western World. Valve repl...
Calcification risk and immune response are reduced after cardiac valve decellulariztion and subseque...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
Heart valve tissue engineering based on decellularized xenogenic or allogenic starter matrices has s...
The potential for in vitro colonization of decellularized valves by human bone marrow mesenchymal st...
ObjectivesThis study sought to investigate the combination of transcatheter aortic valve implantatio...
ObjectivesClinical translation of tissue-engineered heart valves requires valve competency and lack ...
ObjectiveMechanical and biological prostheses are used to replace damaged heart valves but are assoc...
In this study, we tissue-engineered heart valves in vivo using autologous bone marrow-derived cells ...
ObjectivesThe aim of this study was to demonstrate the feasibility of combining the novel heart valv...
BackgroundAutologous recellularization of decellularized heart valve scaffolds is a promising challe...
Current research on valvular heart repair has focused on tissue-engineered heart valves (TEHV) becau...
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 ...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
Cardiac valve replacement is the second most common heart operation in the Western World. Valve repl...
Calcification risk and immune response are reduced after cardiac valve decellulariztion and subseque...
Tissue-engineered heart valves are proposed as novel viable replacements granting longer durability ...
Heart valve tissue engineering based on decellularized xenogenic or allogenic starter matrices has s...
The potential for in vitro colonization of decellularized valves by human bone marrow mesenchymal st...
ObjectivesThis study sought to investigate the combination of transcatheter aortic valve implantatio...
ObjectivesClinical translation of tissue-engineered heart valves requires valve competency and lack ...
ObjectiveMechanical and biological prostheses are used to replace damaged heart valves but are assoc...
In this study, we tissue-engineered heart valves in vivo using autologous bone marrow-derived cells ...
ObjectivesThe aim of this study was to demonstrate the feasibility of combining the novel heart valv...