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1 Intermittent straining accelerates the development of tissue properties in engineered heart valve tissue
article 2009    
Author: Rubbens, M.P. · Mol, A. · Boerboom, R.A. · Bank, R.A. · Baaijens, F.P.T. · Bouten, C.V.C.
Keywords: Biology · Biomedical Research · Collagen matrices · Constrained controls · Cross-link densities · Faster rates · Heart valves · Human heart · In-vitro · In-vivo · Innovative method · Limiting factors · Mechanical conditioning · Model system · Organized structure · Temporal variation · Tissue architecture · Tissue properties · Tissue-engineered heart · Biomechanics · Cell culture · Collagen · Density (specific gravity) · Mechanical properties · Network architecture · Tissue · Tissue engineering · Valves (mechanical) · collagen · article · collagen synthesis · controlled study · cross linking · heart valve · human · human cell · human tissue · morphology · priority journal · quantitative analysis · tissue culture · tissue engineering · Biomechanics · Bioprosthesis · Cells, Cultured · Collagen · Cross-Linking Reagents · Fibroblasts · Heart Valve Prosthesis · Humans · Models, Cardiovascular · Myocytes, Smooth Muscle · Time Factors · Tissue Engineering · Tissue Scaffolds
[Abstract]

2 Straining mode-dependent collagen remodeling in engineered cardiovascular tissue
article 2009    
Author: Rubbens, M.P. · Mol, A. · Marion, M.H. van · Hanemaaijer, R. · Bank, R.A. · Baaijens, F.P.T. · Bouten, C.V.C.
Keywords: Biology · Biomedical Research · Cardiovascular constructs · Cardiovascular tissue engineering · Cardiovascular tissues · Collagen Gene Expression · Collagen synthesis · Dynamic straining · Extracellular matrices · Glycosaminoglycans · In-vivo · Limiting factors · Matrix composition · Matrix metalloproteinase-1 · Matrix remodeling · Mechanical conditioning · Procollagen · Propeptide · Protein level · Static strain · Tissue remodeling · Bioactivity · Biomechanics · Collagen · Dynamics · Enzyme activity · Enzyme inhibition · Gene expression · Mechanical properties · Tissue · Tissue engineering · Strain · Biological marker · Carboxy terminal telopeptide · Collagen type 1 · Collagen type 3 · Interstitial collagenase · Procollagen type 1 carboxy terminal propeptide · Unclassified drug · Cross linking · Human cell · Human cell culture · Mechanical stimulation · Myofibroblast · Protein secretion · Protein synthesis · Tissue repair · Cell culture · Mechanical stress · Metabolism · Methodology · Cardiovascular System · Cells, Cultured · Collagen · Glycosaminoglycans · Humans · Matrix Metalloproteinase 1 · Stress, Mechanical · Tissue Engineering
[Abstract]

3 The role of collagen cross-links in biomechanical behavior of human aortic heart valve leaflets - Relevance for tissue engineering
article 2007    
Author: Balguid, A. · Rubbens, M.P. · Mol, A. · Bank, R.A. · Bogers, A.J.J.C. · Kats, J.P. van · Mol, B.A.J.M. de · Baaijens, F.P.T. · Bouten, C.V.C.
Keywords: Biology · Biomedical Research · Anisotropy · Biomechanics · Cardiovascular system · Correlation methods · Pressure effects · Tissue engineering · Anisotropic matrix · Biomechanical function · Dynamic tissue straining · Human aortic heart valve leaflets · Load-bearing matrix · Collagen · collagen · adult · article · biomechanics · cell survival · collagen metabolism · controlled study · cross linking · elasticity · female · heart function · heart valve · human · human cell · human tissue · hyperbarism · in vivo study · male · priority journal · protein cross linking · tissue engineering · young modulus · Aortic Valve · Biomechanics · Collagen · Female · Humans · Male · Middle Aged · Tissue Engineering
[Abstract]

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