Tissue engineering strongly relies on the use of hydrogels as highly hydrated 3D matrices to support the maturation of laden cells. However, because of the lack of microarchitecture and sufficient porosity, common hydrogel systems do not provide physical cell-instructive guidance cues and efficient transport of nutrients and oxygen to the inner part of the construct. A controlled, organized cellular alignment and resulting alignment of secreted ECM are hallmarks of muscle, tendons, and nerves and play an important role in determining their functional properties. Although several strategies to induce cellular alignment have been investigated in 2D systems, the generation of cell-instructive 3D hydrogels remains a challenge. Here, we report o...
Micropatterned biomaterial-based hydrogel platforms allow the recapitulation of in vivo-like microst...
Vascular smooth muscle cells align circumferentially around the vessel lumen, which allows these cel...
The graded mechanical properties (e.g., stiffness and stress/strain) of excellular matrix play an im...
Many tissues (e.g. nervous system, cardiac and musculoskeletal) have anisotropic structures and cell...
Cellular alignment 3D engineered tissue a b s t r a c t Organized cellular alignment is critical to ...
Directing cells is essential to organize multi-cellular organisms that are built up from subunits ex...
Engineered tissues featuring aligned ECM possess superior regenerative capabilities for the healing ...
To engineer tissue-like structures, cells must organize themselves into three-dimensional (3D) netwo...
Hydrogels are excellent mimetics of mammalian extracellular matrices and have found widespread use i...
Over the last decades, significant progress has been made in the field of implants and medical devic...
In vivo tissues, including the cardiac, skeletal muscles, tendon and ligaments display characteristi...
Along with continuous research in biotechnology, there is a growing demand for cell culture platform...
The topography of the extracellular matrix (ECM) is a major biophysical regulator of cell behavior. ...
Concentration gradients of soluble and matrix-bound guidance cues in the extracellular matrix direct...
Stem cell behavior is strongly influenced by the physical and chemical cues originating from the ext...
Micropatterned biomaterial-based hydrogel platforms allow the recapitulation of in vivo-like microst...
Vascular smooth muscle cells align circumferentially around the vessel lumen, which allows these cel...
The graded mechanical properties (e.g., stiffness and stress/strain) of excellular matrix play an im...
Many tissues (e.g. nervous system, cardiac and musculoskeletal) have anisotropic structures and cell...
Cellular alignment 3D engineered tissue a b s t r a c t Organized cellular alignment is critical to ...
Directing cells is essential to organize multi-cellular organisms that are built up from subunits ex...
Engineered tissues featuring aligned ECM possess superior regenerative capabilities for the healing ...
To engineer tissue-like structures, cells must organize themselves into three-dimensional (3D) netwo...
Hydrogels are excellent mimetics of mammalian extracellular matrices and have found widespread use i...
Over the last decades, significant progress has been made in the field of implants and medical devic...
In vivo tissues, including the cardiac, skeletal muscles, tendon and ligaments display characteristi...
Along with continuous research in biotechnology, there is a growing demand for cell culture platform...
The topography of the extracellular matrix (ECM) is a major biophysical regulator of cell behavior. ...
Concentration gradients of soluble and matrix-bound guidance cues in the extracellular matrix direct...
Stem cell behavior is strongly influenced by the physical and chemical cues originating from the ext...
Micropatterned biomaterial-based hydrogel platforms allow the recapitulation of in vivo-like microst...
Vascular smooth muscle cells align circumferentially around the vessel lumen, which allows these cel...
The graded mechanical properties (e.g., stiffness and stress/strain) of excellular matrix play an im...