Critical valve diseases in infants have a very poor prognosis for survival. Particularly challenging is for the valve replacement to support somatic growth. From a valve regenerative standpoint, bio-scaffolds have been extensively investigated recently. While bio-scaffold valves facilitate acute valve functionality, their xenogeneic properties eventually induce a hostile immune response. Our goal was to investigate if a bio-scaffold valve could be deposited with tissues derived from allogeneic stem cells, with a specific dynamic culture protocol to enhance the extracellular matrix (ECM) constituents, with subsequent stem cell removal. Porcine small intestinal submucosa (PSIS) tubular-shaped bio-scaffold valves were seeded with human bone ma...
The potential for in vitro colonization of decellularized valves by human bone marrow mesenchymal st...
Extracellular matrix (ECM) scaffolds isolated from valvulated conduits can be useful in developing d...
For treatment of critical heart valve diseases, prosthetic valves perform fairly well in most adults...
A key challenge in tissue engineering a heart valve is to reproduce the major tissue structures resp...
AbstractBackgroundProsthetic valves currently used in children lack the ability to grow with the pat...
Congenital heart disease, which includes heart valve defects, are the most common type of birth abno...
Decellularized scaffolds represent a promising alternative for mitral valve (MV) replacement. This w...
Calcification risk and immune response are reduced after cardiac valve decellulariztion and subseque...
ABSTRACTOPTIMIZATION OF ENGINEERED HEART VALVE TISSUE EXTRACELLULAR MATRIXGeorge Carl Engelmayr, Jr....
The potential for in vitro colonization of decellularized valves by human bone marrow mesenchymal st...
Heart valve tissue engineering based on decellularized xenogenic or allogenic starter matrices has s...
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 ...
Extracellular matrix (ECM) scaffolds isolated from valvulated conduits can be useful in developing d...
Diseased aortic valves often require replacement, with over 30% of the current aortic valve surgerie...
The potential for in vitro colonization of decellularized valves by human bone marrow mesenchymal st...
Extracellular matrix (ECM) scaffolds isolated from valvulated conduits can be useful in developing d...
For treatment of critical heart valve diseases, prosthetic valves perform fairly well in most adults...
A key challenge in tissue engineering a heart valve is to reproduce the major tissue structures resp...
AbstractBackgroundProsthetic valves currently used in children lack the ability to grow with the pat...
Congenital heart disease, which includes heart valve defects, are the most common type of birth abno...
Decellularized scaffolds represent a promising alternative for mitral valve (MV) replacement. This w...
Calcification risk and immune response are reduced after cardiac valve decellulariztion and subseque...
ABSTRACTOPTIMIZATION OF ENGINEERED HEART VALVE TISSUE EXTRACELLULAR MATRIXGeorge Carl Engelmayr, Jr....
The potential for in vitro colonization of decellularized valves by human bone marrow mesenchymal st...
Heart valve tissue engineering based on decellularized xenogenic or allogenic starter matrices has s...
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 ...
Extracellular matrix (ECM) scaffolds isolated from valvulated conduits can be useful in developing d...
Diseased aortic valves often require replacement, with over 30% of the current aortic valve surgerie...
The potential for in vitro colonization of decellularized valves by human bone marrow mesenchymal st...
Extracellular matrix (ECM) scaffolds isolated from valvulated conduits can be useful in developing d...
For treatment of critical heart valve diseases, prosthetic valves perform fairly well in most adults...