The effect of concentration, thermal history and cell seeding density on the initial mechanical properties of agarose hydrogels
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Nondestructive evaluation of hydrogel mechanical properties using ultrasound.Methods of high integrity RNA extraction from cell/agarose constructModulating gradients in regulatory signals within mesenchymal stem cell seeded hydrogels: a novel strategy to engineer zonal articular cartilage.Effect of initial cell seeding density on 3D-engineered silk fibroin scaffolds for articular cartilage tissue engineering.Supporting Biomaterials for Articular Cartilage Repair.The role of environmental factors in regulating the development of cartilaginous grafts engineered using osteoarthritic human infrapatellar fat pad-derived stem cellsHybrid microscaffold-based 3D bioprinting of multi-cellular constructs with high compressive strength: A new biofabrication strategy.A perspective on bioactive cell microencapsulation.Cell Seeding Densities in Autologous Chondrocyte Implantation Techniques for Cartilage Repair.Direct noninvasive measurement and numerical modeling of depth-dependent strains in layered agarose constructsConducting polymer-hydrogels for medical electrode applications.Infrapatellar fat pad-derived stem cells maintain their chondrogenic capacity in disease and can be used to engineer cartilaginous grafts of clinically relevant dimensions.A comparison of the functionality and in vivo phenotypic stability of cartilaginous tissues engineered from different stem cell sources.The effects of fibrin and fibrin-agarose on the extracellular matrix profile of bioengineered oral mucosa.Scaffold architecture determines chondrocyte response to externally applied dynamic compression.Generation and characterization of monodisperse deformable alginate and pNIPAM microparticles with a wide range of shear moduli.Gradient-regulated hydrogel for interface tissue engineering: steering simultaneous osteo/chondrogenesis of stem cells on a chip.Chondrocytes and bone marrow-derived mesenchymal stem cells undergoing chondrogenesis in agarose hydrogels of solid and channelled architectures respond differentially to dynamic culture conditions.* Constrained Cage Culture Improves Engineered Cartilage Functional Properties by Enhancing Collagen Network Stability.Engineering zonal cartilaginous tissue by modulating oxygen levels and mechanical cues through the depth of infrapatellar fat pad stem cell laden hydrogels.Chondrogenic potential of physically treated bovine cartilage matrix derived porous scaffolds on human dermal fibroblast cells.
P2860
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P2860
The effect of concentration, thermal history and cell seeding density on the initial mechanical properties of agarose hydrogels
description
scientific article published on 30 December 2008
@en
wetenschappelijk artikel
@nl
наукова стаття, опублікована в жовтні 2009
@uk
name
The effect of concentration, t ...... roperties of agarose hydrogels
@en
The effect of concentration, t ...... roperties of agarose hydrogels
@nl
type
label
The effect of concentration, t ...... roperties of agarose hydrogels
@en
The effect of concentration, t ...... roperties of agarose hydrogels
@nl
prefLabel
The effect of concentration, t ...... roperties of agarose hydrogels
@en
The effect of concentration, t ...... roperties of agarose hydrogels
@nl
P2093
P50
P1476
The effect of concentration, t ...... roperties of agarose hydrogels
@en
P2093
Anthony J. Robinson
Conor T. Buckley
Daniel J. Kelly
Fergal J. O’Brien
P304
P356
10.1016/J.JMBBM.2008.12.007
P577
2008-12-30T00:00:00Z