Developing an artificial extracellular matrix that closely mimics the native tissue microenvironment is important for use as both a cell culture platform for controlling cell fate and an <i>in vitro</i> model system for investigating the role of the cellular microenvironment. Electrospinning, one of the methods for fabricating structures that mimic the native ECM, is a promising technique for creating fibrous platforms. It is well-known that align or randomly distributed electrospun fibers provide cellular contact guidance in a single pattern. However, native tissues have hierarchical structures, i.e., topographies on the micro- and nanoscales, rather than a single structure. Thus, we fabricated randomly distributed nanofibrous (720 ± 80 nm...
Cell shape in vitro can be directed by geometrically defined micropatterned adhesion substrates. How...
AbstractEngineering complex extracellular matrix (ECM) is an important challenge for cell and tissue...
Human mesenchymal stem cells (hMSCs) have the potential to differentiate into numerous cell types in...
Developing an artificial extracellular matrix that closely mimics the native tissue microenvironment...
Biological responses on biomaterials occur either on their surface or at the interface. Therefore, s...
The last decade has seen exciting and unprecedented work at the interface between biology and materi...
The nanostructure of the extracellular matrix (ECM) can direct cell attachment, alignment, and organ...
Nanotechnology allows for the construction of scaffold and devices that interact at the subcellular ...
Lab-grown tissues have tremendous potential to accelerate drug discovery and identify some of the un...
International audienceCell shape in vitro can be directed by geometrically defined micropatterned ad...
A critical component of tissue engineering is the ability to functionally replace native tissue stro...
Many processes have been considered for fabricating scaffolds including additive manufacturing, elec...
Inspired by the hierarchically organized protein fibers in extracellular matrix (ECM) as well as the...
Cell shape in vitro can be directed by geometrically-defined micropatterned adhesion substrates. How...
The last decade has witnessed great progress in understanding and manipulating self-assembly of bloc...
Cell shape in vitro can be directed by geometrically defined micropatterned adhesion substrates. How...
AbstractEngineering complex extracellular matrix (ECM) is an important challenge for cell and tissue...
Human mesenchymal stem cells (hMSCs) have the potential to differentiate into numerous cell types in...
Developing an artificial extracellular matrix that closely mimics the native tissue microenvironment...
Biological responses on biomaterials occur either on their surface or at the interface. Therefore, s...
The last decade has seen exciting and unprecedented work at the interface between biology and materi...
The nanostructure of the extracellular matrix (ECM) can direct cell attachment, alignment, and organ...
Nanotechnology allows for the construction of scaffold and devices that interact at the subcellular ...
Lab-grown tissues have tremendous potential to accelerate drug discovery and identify some of the un...
International audienceCell shape in vitro can be directed by geometrically defined micropatterned ad...
A critical component of tissue engineering is the ability to functionally replace native tissue stro...
Many processes have been considered for fabricating scaffolds including additive manufacturing, elec...
Inspired by the hierarchically organized protein fibers in extracellular matrix (ECM) as well as the...
Cell shape in vitro can be directed by geometrically-defined micropatterned adhesion substrates. How...
The last decade has witnessed great progress in understanding and manipulating self-assembly of bloc...
Cell shape in vitro can be directed by geometrically defined micropatterned adhesion substrates. How...
AbstractEngineering complex extracellular matrix (ECM) is an important challenge for cell and tissue...
Human mesenchymal stem cells (hMSCs) have the potential to differentiate into numerous cell types in...