The present study reports the fabrication of medicated nanofibers for potential colon-targeted drug delivery using modified coaxial electrospinning, in which salt (NaCl) solutions were exploited as shell fluids to facilitate the preparation processes. A homemade concentric spinneret with an indented core capillary was developed to conduct the coaxial processes. Optical observations and scanning electron microscopic results demonstrated that the shell-to-core fluid flow rate ratio was a key parameter, which exerted a significant influence on the electrospinning processes and could be exploited to control the fibers’ morphology and diameters. A scaling law of D=0.173F-0.531 (R2=0.9976) was built, by which the nanofibers’ sizes can be predicte...
Encapsulation of a model anti-cancer drug, 5-Fluorouracul (5-FU) into biocompatible core-shell nanof...
In tissue engineering, nanofibrous scaffolds can achieve better biological responses than microfibro...
Electrospun nanofibers have shown great potential as drug vehicles and tissue engineering scaffolds....
A modified coaxial electrospinning process was developed for creating drug-loaded composite nanofibe...
Electrospinning is a method utilized to produce nano-scale fibers for tissue engineering application...
Eudragit® L 100-55 nanofibers loaded with diclofenac sodium (DS) were successfully prepared using an...
Electrospun fibers are explored as a new system for controlled drug delivery. Novel techniques capab...
Electrospinning is a method that can be used in the production of polymeric nanofibres. Polymer solu...
A recent approach for controlled release of drugs is the production of core-shell fibers via modifie...
This study reports a new type of drug-loaded core-shell nanofibers capable of providing dual control...
In the present work we have attempted to develop a novel transmucosal patch of diclofenac sodium usi...
Electrospinning is a technique used to manufacture nano- and submicron fibers based on synthetic or ...
A modified tri-axial electrospinning process was developed for the generation of a new type of pH-se...
International audienceThe electrospinning technique is a useful and versatile approach for conversio...
The limitations of conventional therapeutic drugs necessitate the importance of developing novel the...
Encapsulation of a model anti-cancer drug, 5-Fluorouracul (5-FU) into biocompatible core-shell nanof...
In tissue engineering, nanofibrous scaffolds can achieve better biological responses than microfibro...
Electrospun nanofibers have shown great potential as drug vehicles and tissue engineering scaffolds....
A modified coaxial electrospinning process was developed for creating drug-loaded composite nanofibe...
Electrospinning is a method utilized to produce nano-scale fibers for tissue engineering application...
Eudragit® L 100-55 nanofibers loaded with diclofenac sodium (DS) were successfully prepared using an...
Electrospun fibers are explored as a new system for controlled drug delivery. Novel techniques capab...
Electrospinning is a method that can be used in the production of polymeric nanofibres. Polymer solu...
A recent approach for controlled release of drugs is the production of core-shell fibers via modifie...
This study reports a new type of drug-loaded core-shell nanofibers capable of providing dual control...
In the present work we have attempted to develop a novel transmucosal patch of diclofenac sodium usi...
Electrospinning is a technique used to manufacture nano- and submicron fibers based on synthetic or ...
A modified tri-axial electrospinning process was developed for the generation of a new type of pH-se...
International audienceThe electrospinning technique is a useful and versatile approach for conversio...
The limitations of conventional therapeutic drugs necessitate the importance of developing novel the...
Encapsulation of a model anti-cancer drug, 5-Fluorouracul (5-FU) into biocompatible core-shell nanof...
In tissue engineering, nanofibrous scaffolds can achieve better biological responses than microfibro...
Electrospun nanofibers have shown great potential as drug vehicles and tissue engineering scaffolds....