EMT-inducing biomaterials for heart valve engineering: taking cues from developmental biology.
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Matrix production and organization by endothelial colony forming cells in mechanically strained engineered tissue constructsElectrospun PGS:PCL microfibers align human valvular interstitial cells and provide tunable scaffold anisotropyTri-layered elastomeric scaffolds for engineering heart valve leaflets.Fiber-reinforced hydrogel scaffolds for heart valve tissue engineering.Laminin Peptide-Immobilized Hydrogels Modulate Valve Endothelial Cell Hemostatic Regulation.Comparison of Mesenchymal Stem Cell Source Differentiation Toward Human Pediatric Aortic Valve Interstitial Cells within 3D Engineered Matrices.Application of hydrogels in heart valve tissue engineering.The expanding world of tissue engineering: the building blocks and new applications of tissue engineered constructs.Effect of biodegradation and de novo matrix synthesis on the mechanical properties of valvular interstitial cell-seeded polyglycerol sebacate-polycaprolactone scaffoldsCurrent progress in tissue engineering of heart valves: multiscale problems, multiscale solutions3D bioprinting of heterogeneous aortic valve conduits with alginate/gelatin hydrogels.Hyaluronan Hydrogels for a Biomimetic Spongiosa Layer of Tissue Engineered Heart Valve Scaffolds.Cellular transitions and tissue engineering.Myocardial contraction and hyaluronic acid mechanotransduction in epithelial-to-mesenchymal transformation of endocardial cells.Heart valve tissue engineering: how far is the bedside from the bench?Inflammation in tissue engineering: The Janus between engraftment and rejection.A developmental approach to induced pluripotent stem cells-based tissue engineered heart valves.The future of heart valve replacement: recent developments and translational challenges for heart valve tissue engineering.Use of a special bioreactor for the cultivation of a new flexible polyurethane scaffold for aortic valve tissue engineering.In situ heart valve tissue engineering: simple devices, smart materials, complex knowledge.JetValve: Rapid manufacturing of biohybrid scaffolds for biomimetic heart valve replacement.Stem Cell Cytoskeletal Responses to Pulsatile Flow in Heart Valve Tissue Engineering Studies.Polymeric Scaffolds for Bioartificial Cardiovascular Prostheses
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EMT-inducing biomaterials for heart valve engineering: taking cues from developmental biology.
description
article científic
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article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on 13 July 2011
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
EMT-inducing biomaterials for ...... es from developmental biology.
@en
EMT-inducing biomaterials for ...... es from developmental biology.
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type
label
EMT-inducing biomaterials for ...... es from developmental biology.
@en
EMT-inducing biomaterials for ...... es from developmental biology.
@nl
prefLabel
EMT-inducing biomaterials for ...... es from developmental biology.
@en
EMT-inducing biomaterials for ...... es from developmental biology.
@nl
P2093
P2860
P1476
EMT-inducing biomaterials for ...... es from developmental biology.
@en
P2093
M K Sewell-Loftin
W David Merryman
Young Wook Chun
P2860
P2888
P304
P356
10.1007/S12265-011-9300-4
P407
P577
2011-07-13T00:00:00Z