The design of hydrogels as mimetics of tissues’ matrices typically disregards the viscous nature of native tissues and focuses only on their elastic properties. In the case of stem cell chondrogenesis, this has led to contradictory results, likely due to unreported changes in the matrices’ viscous modulus. Here, by employing isoelastic matrices with Young's modulus of ≈12 kPa, variations in viscous properties alone (i.e., loss tangent between 0.1 and 0.25) are demonstrated to be sufficient to drive efficient growth factor-free chondrogenesis of human mesenchymal stem cells, both in 2D and 3D cultures. The increase of the viscous component of RGD-functionalized polyacrylamide or polyethylene glycol maleimide hydrogels promotes a phenotype wi...
The inability of adult articular cartilage to regenerate has motivated the development of tissue eng...
Tissue engineering is viewed as a promising option for long-term repair of cartilage lesions, but cu...
Within the complex microarchitecture of native cartilage tissue, the micromechanical properties of p...
Cartilage tissue equivalents formed from hydrogels containing chondrocytes could provide a solution ...
The extracellular matrix (ECM) is a highly-hydrated mesh of fibrillar proteins a glycosaminoglycans ...
Biomechanical cues such as shear stress, stretching, compression, and matrix elasticity are vital in...
The extracellular matrix provides complex biophysical cues to cells which respond to these signals w...
Human mesenchymal stem cells (hMSCs) are capable of probing and responding to the mechanical propert...
In order to effectively incorporate stem cells into tissue engineering solutions, a deeper understan...
Cells actively probe the stiffness of their surrounding and respond to it. The authors recently foun...
In order to effectively incorporate stem cells into tissue engineering solutions, a deeper understan...
This study adopts a combined computational and experimental approach to determine the mechanical, st...
Of the many external factors that affect cell behavior, mechanical cues are fundamental in modulatin...
Substantial research over the past two decades has established that extracellular matrix (ECM) elast...
Funder: Medical Research Council (UK) Career Development Award (G1100312/1)Funder: Medical Research ...
The inability of adult articular cartilage to regenerate has motivated the development of tissue eng...
Tissue engineering is viewed as a promising option for long-term repair of cartilage lesions, but cu...
Within the complex microarchitecture of native cartilage tissue, the micromechanical properties of p...
Cartilage tissue equivalents formed from hydrogels containing chondrocytes could provide a solution ...
The extracellular matrix (ECM) is a highly-hydrated mesh of fibrillar proteins a glycosaminoglycans ...
Biomechanical cues such as shear stress, stretching, compression, and matrix elasticity are vital in...
The extracellular matrix provides complex biophysical cues to cells which respond to these signals w...
Human mesenchymal stem cells (hMSCs) are capable of probing and responding to the mechanical propert...
In order to effectively incorporate stem cells into tissue engineering solutions, a deeper understan...
Cells actively probe the stiffness of their surrounding and respond to it. The authors recently foun...
In order to effectively incorporate stem cells into tissue engineering solutions, a deeper understan...
This study adopts a combined computational and experimental approach to determine the mechanical, st...
Of the many external factors that affect cell behavior, mechanical cues are fundamental in modulatin...
Substantial research over the past two decades has established that extracellular matrix (ECM) elast...
Funder: Medical Research Council (UK) Career Development Award (G1100312/1)Funder: Medical Research ...
The inability of adult articular cartilage to regenerate has motivated the development of tissue eng...
Tissue engineering is viewed as a promising option for long-term repair of cartilage lesions, but cu...
Within the complex microarchitecture of native cartilage tissue, the micromechanical properties of p...