AbstractCurrently available heart valve replacements are limited in long-term performance or fail due to leaflet thickening, lack of growth or remodeling potential. In order to address these issues, it is necessary to mimic multiple factors of the native valvular extracellular matrix (ECM) such as architecture, mechanical behavior and biochemical signals. Here, we successfully generated an electrospun PEGdma–PLA scaffold adapted to the structure and mechanical properties of native valve leaflets. Valvular interstitial cells (VICs) and valvular endothelial cells (VECs) were seeded on the scaffold and when cultured under physiological conditions in a bioreactor, the construct performed like a native leaflet. Atomic force microscopy (AFM) was ...
Creating autologous tissues with on-demand and native-like biomechanical properties is the ultimate ...
Since most of the body’s extracellular matrix (ECM) is composed of collagen and elastin, we be...
Natural polymers collagen, glycosaminoglycans, and elastin are promising candidate materials for hea...
AbstractCurrently available heart valve replacements are limited in long-term performance or fail du...
Tissue engineered heart valves (TEHVs) that can grow and remodel have the potential to serve as perm...
BACKGROUND: Previous tissue engineering approaches to create heart valves have been limited by the s...
Valvular heart disease is predicted to be the next cardiac epidemic (d’Arcy et al., 2011) and valve ...
PurposeThis study describes the efforts to develop and test the first hybrid tissue-engineered heart...
Collagen and elastin are two major components of the extracellular matrix of heart valves. This work...
Valvular heart disease (VHD) is a serious health burden affecting morbidity and mortality worldwide....
AbstractCollagen and elastin are two major components of the extracellular matrix of heart valves. T...
This dissertation describes strategies that I have developed to introduce mechanical and biochemical...
More than 100,000 Americans each year undergo aortic valve (AV) replacement due to valve failure. An...
Heart valves are characterized to be highly flexible yet tough, and exhibit complex deformation char...
Tissue engineers have achieved limited success so far in designing an ideal scaffold for aortic valv...
Creating autologous tissues with on-demand and native-like biomechanical properties is the ultimate ...
Since most of the body’s extracellular matrix (ECM) is composed of collagen and elastin, we be...
Natural polymers collagen, glycosaminoglycans, and elastin are promising candidate materials for hea...
AbstractCurrently available heart valve replacements are limited in long-term performance or fail du...
Tissue engineered heart valves (TEHVs) that can grow and remodel have the potential to serve as perm...
BACKGROUND: Previous tissue engineering approaches to create heart valves have been limited by the s...
Valvular heart disease is predicted to be the next cardiac epidemic (d’Arcy et al., 2011) and valve ...
PurposeThis study describes the efforts to develop and test the first hybrid tissue-engineered heart...
Collagen and elastin are two major components of the extracellular matrix of heart valves. This work...
Valvular heart disease (VHD) is a serious health burden affecting morbidity and mortality worldwide....
AbstractCollagen and elastin are two major components of the extracellular matrix of heart valves. T...
This dissertation describes strategies that I have developed to introduce mechanical and biochemical...
More than 100,000 Americans each year undergo aortic valve (AV) replacement due to valve failure. An...
Heart valves are characterized to be highly flexible yet tough, and exhibit complex deformation char...
Tissue engineers have achieved limited success so far in designing an ideal scaffold for aortic valv...
Creating autologous tissues with on-demand and native-like biomechanical properties is the ultimate ...
Since most of the body’s extracellular matrix (ECM) is composed of collagen and elastin, we be...
Natural polymers collagen, glycosaminoglycans, and elastin are promising candidate materials for hea...