The aortic valve functions in a complex mechanical environment which leads to force dependent cellular and tissue responses. Characterization of these responses provides a fundamental understanding of valve pathogenesis. The aim of this work was to develop an ex vivo organ culture system capable of simulating physiological aortic pressures and flow rates, and study the biological characteristics of native porcine aortic valves cultured in the system. Collagen, sGAG and elastin content of the valve leaflets were measured and cusp morphology, cell phenotype, cell proliferation and apoptosis were examined. Presence of endothelial cells (ECs) on the leaflet surface was also evaluated. The differences in collagen, sGAG and elastin contents were ...
With an estimated 5 million people suffering from valve disease in the United, valve disease is curr...
The aortic valve (AV) functions in arguably the most demanding mechanical environment in the body. T...
Tissue-engineered heart valves are a promising alternative for mechanical and bioprosthetic heart va...
Cardiac valves are dynamic, sophisticated structures which interact closely with the surrounding hem...
Aortic valve disease (AVD) affects millions of people of all ages around the world. Current treatme...
Aortic heart valves and their replacements fail in vivo for reasons that are not fullyunderstood. Me...
Aortic valve disease is among the third most common cardiovascular disease worldwide, and is also a ...
Aortic valve disease is among the third most common cardiovascular disease worldwide, and is also a ...
The aortic valve (AV) is essentially a passive organ that permits unidirectional blood flow from the...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Calcific aortic valve disease is highly prevalent, especially in the elderly. Currently, the exact m...
Calcific aortic valve disease is highly prevalent, especially in the elderly. Currently, the exact m...
Current designs of bileaflet mechanical heart valves (BMHVs) and trileaflet polymeric heart valves(T...
Tissue engineered constructs with autologous adult stem cells capable of self-repair and growth are ...
With an estimated 5 million people suffering from valve disease in the United, valve disease is curr...
With an estimated 5 million people suffering from valve disease in the United, valve disease is curr...
The aortic valve (AV) functions in arguably the most demanding mechanical environment in the body. T...
Tissue-engineered heart valves are a promising alternative for mechanical and bioprosthetic heart va...
Cardiac valves are dynamic, sophisticated structures which interact closely with the surrounding hem...
Aortic valve disease (AVD) affects millions of people of all ages around the world. Current treatme...
Aortic heart valves and their replacements fail in vivo for reasons that are not fullyunderstood. Me...
Aortic valve disease is among the third most common cardiovascular disease worldwide, and is also a ...
Aortic valve disease is among the third most common cardiovascular disease worldwide, and is also a ...
The aortic valve (AV) is essentially a passive organ that permits unidirectional blood flow from the...
Mechanical conditioning has been shown to promote tissue formation in a wide variety of tissue engin...
Calcific aortic valve disease is highly prevalent, especially in the elderly. Currently, the exact m...
Calcific aortic valve disease is highly prevalent, especially in the elderly. Currently, the exact m...
Current designs of bileaflet mechanical heart valves (BMHVs) and trileaflet polymeric heart valves(T...
Tissue engineered constructs with autologous adult stem cells capable of self-repair and growth are ...
With an estimated 5 million people suffering from valve disease in the United, valve disease is curr...
With an estimated 5 million people suffering from valve disease in the United, valve disease is curr...
The aortic valve (AV) functions in arguably the most demanding mechanical environment in the body. T...
Tissue-engineered heart valves are a promising alternative for mechanical and bioprosthetic heart va...