Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, hence, the structural and mechanical properties of engineered cardiovascular tissues. Intermittent straining, i.e., alternating periods of cyclic and static strain, has previously been shown to result in more mature tissue compared with continuous cyclic straining. Nevertheless, the underlying mechanism is unknown. We have determined the short-term effects of continuous cyclic strain and of cyclic strain followed by static strain at the gene expression level to improve insight into the mechano-regulatory mechanism of intermittent conditioning on collagen synthesis, remodeling and maturation. Tissue-engineered constructs, consisting of human v...
Tissue-engineered heart valves lack sufficient amounts of functionally organized structures and cons...
Tissue-engineered heart valves lack sufficient amounts of functionally organized structures and cons...
Tissue-engineered heart valves lack sufficient amounts of functionally organized structures and cons...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Tissue-engineered heart valves lack sufficient amounts of functionally organized structures and cons...
Tissue-engineered heart valves lack sufficient amounts of functionally organized structures and cons...
Tissue-engineered heart valves lack sufficient amounts of functionally organized structures and cons...
Tissue-engineered heart valves lack sufficient amounts of functionally organized structures and cons...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Mechanical conditioning is often used to enhance collagen synthesis, remodeling and maturation and, ...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Similar to native cardiovascular tissues, the mechanical properties of engineered cardiovascular con...
Tissue-engineered heart valves lack sufficient amounts of functionally organized structures and cons...
Tissue-engineered heart valves lack sufficient amounts of functionally organized structures and cons...
Tissue-engineered heart valves lack sufficient amounts of functionally organized structures and cons...
Tissue-engineered heart valves lack sufficient amounts of functionally organized structures and cons...