Developing novel, lightweight and biocompatible mesh for pelvic organ prolapse, a gynecological disease, has attracted the global interest of biomedical researchers. In our study, polycaprolactone and nylon 6 mats with excellent mechanical properties were fabricated via co-electrospinning. Positively charged chitosan with antimicrobial properties and negatively charged collagen with good biocompatibility were then assembled on the nanofiber mats via layer by layer (LBL) technology. SEM and mechanical property tests showed that LBL deposition increased the nanofibers’ diameter and elastic modulus. To evaluate the successful deposition process, the zeta potential, The Fourier-transform infrared, X-ray diffraction, and X-ray photoelectron spec...
Design and fabrication of a scaffold that can fulfill the require-ments of tissue engineering is det...
In this study, two different biomaterials were fabricated and their potential use as a bilayer scaff...
By combining electrospinning and layer-by-layer deposition techniques, new porous material scaffolds...
Polymer hydrogels resemble the natural living tissue due to their high water content and soft consis...
Design and fabrication of nanofibrous scaffolds should mimic the native extracellular matrix. This s...
Chitosan is a natural polymer that intrinsically presents haemostatic, mucoadhesive, antimicrobial a...
Objective(s): Fabrication of scaffolds with improved mechanical properties and favorable cellular co...
Polysaccharide-based nanofibers with amultilayered structure are prepared by combining electrospinni...
Electrospinning is an interesting technique to produce polymer membranes made of entangled nanofibre...
By combining electrospinning and layer-by-layer deposition techniques, new porous material scaffolds...
Electrospinning, which is a fiber fabrication technique using electrical forces to produce fibers wi...
OBJECTIVE: The use of knitted, polypropylene meshes for the surgical treatment of pelvic organ prola...
Novel nanofibers from blends of polylactic-co-glycolic acid (PLGA) and chitosan have been produced t...
Publisher Copyright: © 2022 by the authors. Licensee MDPI, Basel, Switzerland.Hybrid scaffolds obtai...
Chitosan is a natural polymer derived from the chitin of crustacean or mushroom shells, that intrins...
Design and fabrication of a scaffold that can fulfill the require-ments of tissue engineering is det...
In this study, two different biomaterials were fabricated and their potential use as a bilayer scaff...
By combining electrospinning and layer-by-layer deposition techniques, new porous material scaffolds...
Polymer hydrogels resemble the natural living tissue due to their high water content and soft consis...
Design and fabrication of nanofibrous scaffolds should mimic the native extracellular matrix. This s...
Chitosan is a natural polymer that intrinsically presents haemostatic, mucoadhesive, antimicrobial a...
Objective(s): Fabrication of scaffolds with improved mechanical properties and favorable cellular co...
Polysaccharide-based nanofibers with amultilayered structure are prepared by combining electrospinni...
Electrospinning is an interesting technique to produce polymer membranes made of entangled nanofibre...
By combining electrospinning and layer-by-layer deposition techniques, new porous material scaffolds...
Electrospinning, which is a fiber fabrication technique using electrical forces to produce fibers wi...
OBJECTIVE: The use of knitted, polypropylene meshes for the surgical treatment of pelvic organ prola...
Novel nanofibers from blends of polylactic-co-glycolic acid (PLGA) and chitosan have been produced t...
Publisher Copyright: © 2022 by the authors. Licensee MDPI, Basel, Switzerland.Hybrid scaffolds obtai...
Chitosan is a natural polymer derived from the chitin of crustacean or mushroom shells, that intrins...
Design and fabrication of a scaffold that can fulfill the require-ments of tissue engineering is det...
In this study, two different biomaterials were fabricated and their potential use as a bilayer scaff...
By combining electrospinning and layer-by-layer deposition techniques, new porous material scaffolds...