Recent biomedical hydrogels applications require the development of nanostructures with controlled diameter and adjustable mechanical properties. Here we present a technique for the production of flexible nanofilaments to be used as drug carriers or in microfluidics, with deformability and elasticity resembling those of long DNA chains. The fabrication method is based on the core-shell electrospinning technique with core solution polymerisation post electrospinning. Produced from the nanofibers highly deformable hydrogel nanofilaments are characterised by their Brownian motion and bending dynamics. The evaluated mechanical properties are compared with AFM nanoindentation tests
Hydrogels offer interesting possibilities in various biomedical applications, including tissue regen...
<p>a) Plot of the mean square displacement of a filament of contour length 21.5 μm as a function of ...
The actuation of a single hydrogel nanofibre is measured for the first time by AFM. The actuation st...
Stimuli-responsive polymer gels possess unique properties such as multifold change of volume in resp...
<p>a) SEM micrograph presenting ribbon-like core-shell PLCL/PAAm nanofibre (EA3) (see file <a href="...
Nanofiber-reinforced hydrogels have recently gained attention in biomedical engineering. Such three-...
In order to reduce the invasiveness of implantable electronic sensor devices, a technology is needed...
Islands-in-the-sea nanofibres are a very interesting system: one polymer (islands) is distributed in...
A nanofabrication method for the production of flexible core-shell structured silk elastin nanofiber...
As the population gets older, the demands for new medical treatments increase since many of our most...
Hydrogels, porous hydrated polymeric materials, are being increasingly used in biomedical applicatio...
Mechanically robust hydrogels are required for many tissue engineering applications to serve as cell...
<p>Movie presents dissolution of nanofibers polymer shell. Highly flexible nanofilaments can be obse...
The present study reports the fabrication of medicated nanofibers for potential colon-targeted drug ...
In this work a new method is presented to efficiently produce hydrogel scaffolds reinforced with nan...
Hydrogels offer interesting possibilities in various biomedical applications, including tissue regen...
<p>a) Plot of the mean square displacement of a filament of contour length 21.5 μm as a function of ...
The actuation of a single hydrogel nanofibre is measured for the first time by AFM. The actuation st...
Stimuli-responsive polymer gels possess unique properties such as multifold change of volume in resp...
<p>a) SEM micrograph presenting ribbon-like core-shell PLCL/PAAm nanofibre (EA3) (see file <a href="...
Nanofiber-reinforced hydrogels have recently gained attention in biomedical engineering. Such three-...
In order to reduce the invasiveness of implantable electronic sensor devices, a technology is needed...
Islands-in-the-sea nanofibres are a very interesting system: one polymer (islands) is distributed in...
A nanofabrication method for the production of flexible core-shell structured silk elastin nanofiber...
As the population gets older, the demands for new medical treatments increase since many of our most...
Hydrogels, porous hydrated polymeric materials, are being increasingly used in biomedical applicatio...
Mechanically robust hydrogels are required for many tissue engineering applications to serve as cell...
<p>Movie presents dissolution of nanofibers polymer shell. Highly flexible nanofilaments can be obse...
The present study reports the fabrication of medicated nanofibers for potential colon-targeted drug ...
In this work a new method is presented to efficiently produce hydrogel scaffolds reinforced with nan...
Hydrogels offer interesting possibilities in various biomedical applications, including tissue regen...
<p>a) Plot of the mean square displacement of a filament of contour length 21.5 μm as a function of ...
The actuation of a single hydrogel nanofibre is measured for the first time by AFM. The actuation st...