The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis electrospun nanofibers, has caused a revolution in the biomedical field. The development of efficient nanofibers has played a significant role in drug delivery, and for use in advanced scaffolds in regenerative medicine. Gelatin is an exceptional biopolymer, which is highly versatile, despite variations in the processing technology. The electrospinning process is an efficient technique for the manufacture of gelatin electrospun nanofibers (GNFs), as it is simple, efficient, and cost-effective. GNFs have higher porosity with large surface area and biocompatibility, despite that there are some drawbacks. These drawbacks include rapid degradation, poor ...
The fabrication of the Guided Tissue Regeneration (GTR) membrane materials have become the key techn...
Gelatin nanofibers have gained significant attention for different biomedical applications, as they ...
Electrospun gelatin(Gel) nanofibers scaffold has such defects as poor mechanical property and quick ...
The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis electros...
<p>The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis...
Electrospinning of natural polymer nanofibers useful for biomedical applications often requires the ...
Electrospun nanofiber materials have been considered as advanced dressing candidates in the perspect...
The gelatin–glutaraldehyde (gelatin–GA) nanofibers were electrospun in order to overcome...
[[abstract]]Gelatin nanofibers (GNs) prepared by electrospinning were cross-linked with glutaraldehy...
Nanofibres have potential in biomedical and pharmaceutical applications including tissue engineering...
The aim of this work was to prepare gelatin nanofibers and investigate their medical applications su...
The development of biomimetic highly-porous scaffolds is essential for successful tissue engineering...
Electrospinning can be used to prepare nanofiber mats from diverse polymers, polymer blends, or poly...
Due to its intrinsic similarity to the extracellular matrix, gelatin electrospun nanofibrous meshes ...
The emergence of nanotechnology has led to new breakthroughs across many fields. One of the main ben...
The fabrication of the Guided Tissue Regeneration (GTR) membrane materials have become the key techn...
Gelatin nanofibers have gained significant attention for different biomedical applications, as they ...
Electrospun gelatin(Gel) nanofibers scaffold has such defects as poor mechanical property and quick ...
The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis electros...
<p>The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis...
Electrospinning of natural polymer nanofibers useful for biomedical applications often requires the ...
Electrospun nanofiber materials have been considered as advanced dressing candidates in the perspect...
The gelatin–glutaraldehyde (gelatin–GA) nanofibers were electrospun in order to overcome...
[[abstract]]Gelatin nanofibers (GNs) prepared by electrospinning were cross-linked with glutaraldehy...
Nanofibres have potential in biomedical and pharmaceutical applications including tissue engineering...
The aim of this work was to prepare gelatin nanofibers and investigate their medical applications su...
The development of biomimetic highly-porous scaffolds is essential for successful tissue engineering...
Electrospinning can be used to prepare nanofiber mats from diverse polymers, polymer blends, or poly...
Due to its intrinsic similarity to the extracellular matrix, gelatin electrospun nanofibrous meshes ...
The emergence of nanotechnology has led to new breakthroughs across many fields. One of the main ben...
The fabrication of the Guided Tissue Regeneration (GTR) membrane materials have become the key techn...
Gelatin nanofibers have gained significant attention for different biomedical applications, as they ...
Electrospun gelatin(Gel) nanofibers scaffold has such defects as poor mechanical property and quick ...