© 2018 Wiley Periodicals, Inc. Electrospinning (ES) of gelatin often requires cytotoxic organic solvents or acidic environments, which deteriorate cell recognition sites. In this study, aqueous, non-toxic, co-solvent ES was performed to obtain core–shell poly(vinyl alcohol) (PVA)/gelatin nanofiber scaffolds. Effects of the core/shell feed rate ratio (FRR) were investigated on a morphological and mechanical basis. PVA:gelatin ratio of 1:4 was the limiting ratio for specific voltage and electrode distance parameters to obtain uniform fibers. Core–shell bead-free structures were obtained at 8% PVA and gelatin aqueous solutions. A mean diameter of 280 nm was obtained for 1:1 FRR at 15 kV and 15 cm of electrode distance. Crosslinking resulted in...
<p>The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis...
The fabrication of the Guided Tissue Regeneration (GTR) membrane materials have become the key techn...
Electrospinning is an exceptional technology to fabricate sub-micrometric fiber scaffolds for regene...
© 2018 Wiley Periodicals, Inc. Electrospinning (ES) of gelatin often requires cytotoxic organic solv...
Electrospinning (ES) of gelatin often requires cytotoxic organic solvents or acidic environments, wh...
A series of nanofibrous scaffolds were prepared by electrospinning of poly(vinyl alcohol) (PVA)/gela...
Electrospinning of natural polymer nanofibers useful for biomedical applications often requires the ...
Introduction: Gelatin is a natural polymer commonly used in biomedical applications in combination w...
The emergence of nanotechnology has led to new breakthroughs across many fields. One of the main ben...
Electrospun nanofibers have attracted a lot of attention in recent years in tissue engineering appli...
The improvement of tissue engineering and regenerative medicine is strictly related to the developme...
Tissue engineering (TE) holds an enormous potential to develop functional scaffolds resembling the s...
The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis electros...
Nanofibres have potential in biomedical and pharmaceutical applications including tissue engineering...
The electrospinning process is an emerging and relatively easy technique to prepare three-dimensiona...
<p>The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis...
The fabrication of the Guided Tissue Regeneration (GTR) membrane materials have become the key techn...
Electrospinning is an exceptional technology to fabricate sub-micrometric fiber scaffolds for regene...
© 2018 Wiley Periodicals, Inc. Electrospinning (ES) of gelatin often requires cytotoxic organic solv...
Electrospinning (ES) of gelatin often requires cytotoxic organic solvents or acidic environments, wh...
A series of nanofibrous scaffolds were prepared by electrospinning of poly(vinyl alcohol) (PVA)/gela...
Electrospinning of natural polymer nanofibers useful for biomedical applications often requires the ...
Introduction: Gelatin is a natural polymer commonly used in biomedical applications in combination w...
The emergence of nanotechnology has led to new breakthroughs across many fields. One of the main ben...
Electrospun nanofibers have attracted a lot of attention in recent years in tissue engineering appli...
The improvement of tissue engineering and regenerative medicine is strictly related to the developme...
Tissue engineering (TE) holds an enormous potential to develop functional scaffolds resembling the s...
The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis electros...
Nanofibres have potential in biomedical and pharmaceutical applications including tissue engineering...
The electrospinning process is an emerging and relatively easy technique to prepare three-dimensiona...
<p>The use of gelatin and gelatin-blend polymers as environmentally safe polymers to synthesis...
The fabrication of the Guided Tissue Regeneration (GTR) membrane materials have become the key techn...
Electrospinning is an exceptional technology to fabricate sub-micrometric fiber scaffolds for regene...