The purpose of this study was to evaluate hybrid poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV)/chitosan nanofibrous mats as scaffolds for skin engineering. In vitro studies were carried out to test the potential of the scaffolds for fibroblasts adhesion, viability, and proliferation (L929 cell line). The in vivo performance was also studied in a full-thickness wound healing model. PHBV/chitosan 4:1 w/w exhibited a higher in vitro biocompatibility and a better ability for cell adhesion and growth, compared to PHBV/chitosan 2:3 w/w. The in vivo assay also revealed the better performance of this scaffold, improving the wound healing process in rats
Chitosan (CS)/poly(ethylene oxide) (PEO)-based nanofiber mats have attracted particular attention as...
Polyhydroxybutyrate-co-hydroxyvalerate (PHB-HV) is natural-based polyester produced by microorganism...
Tissue Engineering and skin grafting, an essential part of regenerative medicine is one of the faste...
The final goal of the present study was the development of a 3-D chitosan dressing that would shorte...
Nowadays, blending of natural and synthetic polymers has attracted a considerable interest in tissue...
Skin loss is one of the oldest and still not totally resolved problems in the medical field. Since s...
In this study, a hierarchical nano/microfibrous chitosan/collagen scaffold that approximates structu...
In this study, a hierarchical nano/microfibrous chitosan/collagen scaffold that approximates structu...
To improve the regeneration of soft tissues, wound coatings were developed, containing nanofibres, d...
To improve the regeneration of soft tissues, wound dressings were developed, containing nanofibers, ...
Nanofibrous biocomposite scaffolds of chitosan (CS), PVA, and hydroxyapatite (HA) were prepared by e...
The fabrication of porous 3D printed chitosan (CH) scaffolds for skin tissue regeneration and their ...
Combination of bioceramics with polymers to fabricate nanofibrous scaffolds holds enormous potential...
Biocompatible fibrous scaffolds based on highly deacetylated chitosan were fabricated using high-thr...
Hybrid fibrous mat containing cell interactive molecules offers the ability to deliver the cells and...
Chitosan (CS)/poly(ethylene oxide) (PEO)-based nanofiber mats have attracted particular attention as...
Polyhydroxybutyrate-co-hydroxyvalerate (PHB-HV) is natural-based polyester produced by microorganism...
Tissue Engineering and skin grafting, an essential part of regenerative medicine is one of the faste...
The final goal of the present study was the development of a 3-D chitosan dressing that would shorte...
Nowadays, blending of natural and synthetic polymers has attracted a considerable interest in tissue...
Skin loss is one of the oldest and still not totally resolved problems in the medical field. Since s...
In this study, a hierarchical nano/microfibrous chitosan/collagen scaffold that approximates structu...
In this study, a hierarchical nano/microfibrous chitosan/collagen scaffold that approximates structu...
To improve the regeneration of soft tissues, wound coatings were developed, containing nanofibres, d...
To improve the regeneration of soft tissues, wound dressings were developed, containing nanofibers, ...
Nanofibrous biocomposite scaffolds of chitosan (CS), PVA, and hydroxyapatite (HA) were prepared by e...
The fabrication of porous 3D printed chitosan (CH) scaffolds for skin tissue regeneration and their ...
Combination of bioceramics with polymers to fabricate nanofibrous scaffolds holds enormous potential...
Biocompatible fibrous scaffolds based on highly deacetylated chitosan were fabricated using high-thr...
Hybrid fibrous mat containing cell interactive molecules offers the ability to deliver the cells and...
Chitosan (CS)/poly(ethylene oxide) (PEO)-based nanofiber mats have attracted particular attention as...
Polyhydroxybutyrate-co-hydroxyvalerate (PHB-HV) is natural-based polyester produced by microorganism...
Tissue Engineering and skin grafting, an essential part of regenerative medicine is one of the faste...