Chitosan (CS) membranes obtained by electrospinning are potentially ideal substrates for soft tissue engineering as they combine the excellent biological properties of CS with the extracellular matrix (ECM)-like structure of nanofibrous mats. However, the high amount of acid solvents required to spun CS solutions interferes with the biocompatibility of CS fibres. To overcome this limitation, novel CS based solutions were investigated in this work. Low amount of acidic acid (0.5 M) was used and dibasic sodium phosphate (DSP) was introduced as ionic crosslinker to improve nanofibres water stability and to neutralize the acidic pH of electrospun membranes after fibres soaking in biological fluids. Randomly oriented and aligned nanofibres (128 ...
Chitosan has long been known as a biocompatible and biodegradable material suitable for tissue engin...
Electrospun nanofibers have been considered as relatively ideal material system for the design and c...
Electrospinning has been used for decades to generate nano-fibres via an electrically charged jet of...
Chitosan (CS) membranes obtained by electrospinning are potentially ideal substrates for soft tissue...
Chitosan nanofibrous membranes are prepared via an electrospinning technique and explored as potenti...
Electrospinning, which is a fiber fabrication technique using electrical forces to produce fibers wi...
Polymer hydrogels resemble the natural living tissue due to their high water content and soft consis...
In the present study, chitosan was chosen as an excellent material for wound dressing application du...
In the present study, chitosan was chosen as an excellent material for wound dressing application du...
Chitosan has long been known as a biocompatible and biodegradable material suitable for tissue engin...
Electrospinning is a simple, inexpensive, scalable and flexible method of producing randomly oriente...
Chitosan has long been known as a biocompatible and biodegradable material suitable for tissue engin...
New biomimetic micro- and nano-CsU-based fibrous scaffolds electrospun from solution containing high...
Chitosan-based membranes were prepared via electrospinning technique using a low concentrated acetic...
Electrospinning is one of the most promising techniques for generating porous, nonwoven, and submicr...
Chitosan has long been known as a biocompatible and biodegradable material suitable for tissue engin...
Electrospun nanofibers have been considered as relatively ideal material system for the design and c...
Electrospinning has been used for decades to generate nano-fibres via an electrically charged jet of...
Chitosan (CS) membranes obtained by electrospinning are potentially ideal substrates for soft tissue...
Chitosan nanofibrous membranes are prepared via an electrospinning technique and explored as potenti...
Electrospinning, which is a fiber fabrication technique using electrical forces to produce fibers wi...
Polymer hydrogels resemble the natural living tissue due to their high water content and soft consis...
In the present study, chitosan was chosen as an excellent material for wound dressing application du...
In the present study, chitosan was chosen as an excellent material for wound dressing application du...
Chitosan has long been known as a biocompatible and biodegradable material suitable for tissue engin...
Electrospinning is a simple, inexpensive, scalable and flexible method of producing randomly oriente...
Chitosan has long been known as a biocompatible and biodegradable material suitable for tissue engin...
New biomimetic micro- and nano-CsU-based fibrous scaffolds electrospun from solution containing high...
Chitosan-based membranes were prepared via electrospinning technique using a low concentrated acetic...
Electrospinning is one of the most promising techniques for generating porous, nonwoven, and submicr...
Chitosan has long been known as a biocompatible and biodegradable material suitable for tissue engin...
Electrospun nanofibers have been considered as relatively ideal material system for the design and c...
Electrospinning has been used for decades to generate nano-fibres via an electrically charged jet of...