Cells actively probe the stiffness of their surrounding and respond to it. The authors recently found that maintenance of the chondrogenic phenotype was directly influenced by this property in 2D. Since studies about this process in 3D are still largely absent, this study aimed to transfer this knowledge into a 3D environment. Agarose was modified with RGD to allow active stiffness sensing or RGE as a control. Hydrogels with different mechanical properties were produced by using different concentrations of agarose. Primary chondrocytes were incorporated into the gel, cultured for up to two weeks, and then constructs were analyzed. Cells were surrounded by their own ECM from an early stage and maintained their chondrogenic phenotype, indepen...
AbstractThis study adopts a combined computational and experimental approach to determine the mechan...
Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneo...
Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneo...
Cells actively probe the stiffness of their surrounding and respond to it. The authors recently foun...
Cells actively probe the stiffness of their surrounding and respond to it. The authors recently foun...
Cells actively probe the stiffness of their surrounding and respond to it. The authors recently foun...
Cells actively probe the stiffness of their surrounding and respond to it. The authors recently foun...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
This study adopts a combined computational and experimental approach to determine the mechanical, st...
Biomechanical cues such as shear stress, stretching, compression, and matrix elasticity are vital in...
Of the many external factors that affect cell behavior, mechanical cues have been found to be fundam...
AbstractThis study adopts a combined computational and experimental approach to determine the mechan...
Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneo...
Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneo...
Cells actively probe the stiffness of their surrounding and respond to it. The authors recently foun...
Cells actively probe the stiffness of their surrounding and respond to it. The authors recently foun...
Cells actively probe the stiffness of their surrounding and respond to it. The authors recently foun...
Cells actively probe the stiffness of their surrounding and respond to it. The authors recently foun...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
This study adopts a combined computational and experimental approach to determine the mechanical, st...
Biomechanical cues such as shear stress, stretching, compression, and matrix elasticity are vital in...
Of the many external factors that affect cell behavior, mechanical cues have been found to be fundam...
AbstractThis study adopts a combined computational and experimental approach to determine the mechan...
Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneo...
Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneo...