Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulating cellular behavior and therefore impact on the development of high-performance devices for biomedical applications, such as scaffolds for tissue engineering and systems for drug delivery. Opportunely-designed micro- and nanostructures provides a unique way of controlling cell-biomaterial interaction. This mini-review discusses the current research on the use of electrospinning (extrusion of polymer nanofibers upon the application of an electric field) as effective technique to fabricate patterns of micro- and nano-scale resolution, and the corresponding biological studies. The focus is on the effect of morphological cues, including fiber ali...
Scaffold plays a critical role in tissue engineering where it provides necessary structural support ...
Electrospinning is a very versatile technology that enables production of nanofibrous structures wit...
Micro- and nano-topographies of scaffold surfaces play a pivotal role in tissue engineering applicat...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
The fact that in vivo the extracellular matrix or substratum with which cells interact often include...
Cell–substrate interaction is a process influenced by severalvariables. The topography, the chemical...
Currently, cell culture systems that include nanoscale topography are widely used in order to provid...
Currently, cell culture systems that include nanoscale topography are widely used in order to provid...
Nanotechnology allows for the construction of scaffold and devices that interact at the subcellular ...
Regulation of cell behavior in response to nanoscale features has been the focus of much research in...
The fundamental understanding of cell-material interactions plays a central role in the development ...
Natural extracellular Matrix (ECM) creates a unique cellular microenvironment. It acts as a support ...
As the population gets older, the demands for new medical treatments increase since many of our most...
The ultimate goal of tissue engineering is to replace damaged tissues by applying engineering techno...
Scaffold plays a critical role in tissue engineering where it provides necessary structural support ...
Electrospinning is a very versatile technology that enables production of nanofibrous structures wit...
Micro- and nano-topographies of scaffold surfaces play a pivotal role in tissue engineering applicat...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
Surface properties of biomaterials, such as chemistry and morphology, have a major role in modulatin...
The fact that in vivo the extracellular matrix or substratum with which cells interact often include...
Cell–substrate interaction is a process influenced by severalvariables. The topography, the chemical...
Currently, cell culture systems that include nanoscale topography are widely used in order to provid...
Currently, cell culture systems that include nanoscale topography are widely used in order to provid...
Nanotechnology allows for the construction of scaffold and devices that interact at the subcellular ...
Regulation of cell behavior in response to nanoscale features has been the focus of much research in...
The fundamental understanding of cell-material interactions plays a central role in the development ...
Natural extracellular Matrix (ECM) creates a unique cellular microenvironment. It acts as a support ...
As the population gets older, the demands for new medical treatments increase since many of our most...
The ultimate goal of tissue engineering is to replace damaged tissues by applying engineering techno...
Scaffold plays a critical role in tissue engineering where it provides necessary structural support ...
Electrospinning is a very versatile technology that enables production of nanofibrous structures wit...
Micro- and nano-topographies of scaffold surfaces play a pivotal role in tissue engineering applicat...