Mucosal tissues have great potential for delivery of therapeutic macromolecules, but drug absorption is often thwarted by chemical and physical barriers, such as the mucus layer. Although mucoadhesive technologies increase gastrointestinal residence time, many macromolecules are subjected to degradation or clearance within the mucus layer. Recent advances in nanotechnology have allowed for the fabrication of silicon nanowires on microparticles in a conformal three-dimensional coating. These nanowire coatings have been shown to be robust in acid and to degrade on the scale of weeks in physiological solutions.Nanowire-coated microparticles interact with nanoscale cellular features, such as microvilli, allowing of increased surface area of con...
Effective and cost-efficient healthcare is at the forefront of public discussion; on both personal a...
Robust cell adhesion is known to be necessary to promote cell colonization of biomaterials and diffe...
High aspect ratio nanomaterials, such as vertically aligned silicon nanowire (SiNW) substrates, are ...
Composite particles made by growing nanoscopic silicon wires from the surface of monodispersed, micr...
While the oral drug delivery route has traditionally been the most popular among patients, it is est...
Composite particles made by growing nanoscopic silicon wires from the surface of monodispersed, micr...
Composite particles made by growing nanoscopic silicon wires from the surface of monodispersed, micr...
Engineered cell–nanostructured interfaces generated by vertically aligned silicon nanowire (SiNW) ar...
This thesis explores the interactions between cells and nanowires, to increase our understanding of ...
One-dimensional high aspect ratio nanostructures grown from a copper foil are considered for intrace...
This work builds on previous research at NTNU into the use of vertically aligned copper oxide nanowi...
This work builds on previous research at NTNU into the use of vertically aligned copper oxide nanowi...
The ability to seamlessly merge electronic devices with biological systems at the cellular length sc...
The ability to seamlessly merge electronic devices with biological systems at the cellular length sc...
In recent years, the potential of nanowires for applications within nanomedicine, including drug del...
Effective and cost-efficient healthcare is at the forefront of public discussion; on both personal a...
Robust cell adhesion is known to be necessary to promote cell colonization of biomaterials and diffe...
High aspect ratio nanomaterials, such as vertically aligned silicon nanowire (SiNW) substrates, are ...
Composite particles made by growing nanoscopic silicon wires from the surface of monodispersed, micr...
While the oral drug delivery route has traditionally been the most popular among patients, it is est...
Composite particles made by growing nanoscopic silicon wires from the surface of monodispersed, micr...
Composite particles made by growing nanoscopic silicon wires from the surface of monodispersed, micr...
Engineered cell–nanostructured interfaces generated by vertically aligned silicon nanowire (SiNW) ar...
This thesis explores the interactions between cells and nanowires, to increase our understanding of ...
One-dimensional high aspect ratio nanostructures grown from a copper foil are considered for intrace...
This work builds on previous research at NTNU into the use of vertically aligned copper oxide nanowi...
This work builds on previous research at NTNU into the use of vertically aligned copper oxide nanowi...
The ability to seamlessly merge electronic devices with biological systems at the cellular length sc...
The ability to seamlessly merge electronic devices with biological systems at the cellular length sc...
In recent years, the potential of nanowires for applications within nanomedicine, including drug del...
Effective and cost-efficient healthcare is at the forefront of public discussion; on both personal a...
Robust cell adhesion is known to be necessary to promote cell colonization of biomaterials and diffe...
High aspect ratio nanomaterials, such as vertically aligned silicon nanowire (SiNW) substrates, are ...