Current progress in tissue engineering is focused on the creation of environments in which cultures of relevant cells can adhere, grow and form functional tissue. We propose a method for controlled chemical and topographical cues through surface patterning of self-folding hydrogel films. This provides a conversion of 2D patterning techniques into a viable method of manufacturing a 3D scaffold. While similar bilayers have previously been demonstrated, here we present a faster and high throughput process for fabricating self-folding hydrogel devices incorporating controllable surface nanotopographies by serial hot embossing of sacrificial layers and photolithography
Summary: Synthetic protocols providing mechanical patterns to culture substrate are essential to con...
The proliferation of computer-aided design and additive manufacturing enables on-demand fabrication ...
Tissue engineering aims to capture details of the extracellular matrix (ECM) that stimulate cell gro...
Current progress in tissue engineering is focused on the creation of environments in which cultures ...
There is an unmet need for controlled, dynamic cell scaffolds that will generate 3-D monolayers of e...
The ability to manufacture complex functional three-dimensional (3D) structures in small scale enabl...
Self-organized patterning of mammalian embryonic stem cells on micropatterned surfaces has previousl...
Formation of graded biomaterials to render shape-morphing scaffolds for 4D biofabrication holds grea...
In embryogenesis and morphogenesis, cell clusters or sheets organize into units of increasing comple...
Inspired by natural examples of swelling-actuated self-folding, we utilize photodegradable hydrogels...
The physicochemical properties of hydrogels can be manipulated in both space and time through the co...
To date, optical lithography has been extensively used for in situ patterning of hydrogel structures...
The development of microengineered hydrogels co-cultured with cells in vitro could advance in vivo b...
Ever since its development, tissue engineering has played a very significant role in the medical are...
Conventional additive manufacturing and biofabrication techniques are unable to edit the chemicophys...
Summary: Synthetic protocols providing mechanical patterns to culture substrate are essential to con...
The proliferation of computer-aided design and additive manufacturing enables on-demand fabrication ...
Tissue engineering aims to capture details of the extracellular matrix (ECM) that stimulate cell gro...
Current progress in tissue engineering is focused on the creation of environments in which cultures ...
There is an unmet need for controlled, dynamic cell scaffolds that will generate 3-D monolayers of e...
The ability to manufacture complex functional three-dimensional (3D) structures in small scale enabl...
Self-organized patterning of mammalian embryonic stem cells on micropatterned surfaces has previousl...
Formation of graded biomaterials to render shape-morphing scaffolds for 4D biofabrication holds grea...
In embryogenesis and morphogenesis, cell clusters or sheets organize into units of increasing comple...
Inspired by natural examples of swelling-actuated self-folding, we utilize photodegradable hydrogels...
The physicochemical properties of hydrogels can be manipulated in both space and time through the co...
To date, optical lithography has been extensively used for in situ patterning of hydrogel structures...
The development of microengineered hydrogels co-cultured with cells in vitro could advance in vivo b...
Ever since its development, tissue engineering has played a very significant role in the medical are...
Conventional additive manufacturing and biofabrication techniques are unable to edit the chemicophys...
Summary: Synthetic protocols providing mechanical patterns to culture substrate are essential to con...
The proliferation of computer-aided design and additive manufacturing enables on-demand fabrication ...
Tissue engineering aims to capture details of the extracellular matrix (ECM) that stimulate cell gro...