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Collagen/chitosan based two-compartment and bi-functional dermal scaffolds for skin regeneration
- Source :
- Materials scienceengineering. C, Materials for biological applications. 52
- Publication Year :
- 2014
-
Abstract
- Inspired from the sophisticated bilayer structures of natural dermis, here, we reported collagen/chitosan based two-compartment and bi-functional dermal scaffolds. Two functions refer to mediating rapid angiogenesis based on recombinant human vascular endothelial growth factor (rhVEGF) and antibacterial from gentamicin, which were encapsulated in PLGA microspheres. The gentamicin and rhVEGF encapsulated PLGA microspheres were further combined with collagen/chitosan mixtures in low (lower layer) and high (upper layer) concentrations, and molded to generate the two-compartment and bi-functional scaffolds. Based on morphology and pore structure analyses, it was found that the scaffold has a distinct double layered porous and connective structure with PLGA microspheres encapsulated. Statistical analysis indicated that the pores in the upper layer and in the lower layer have great variations in diameter, indicative of a two-compartment structure. The release profiles of gentamicin and rhVEGF exceeded 28 and 49 days, respectively. In vitro culture of mouse fibroblasts showed that the scaffold can facilitate cell adhesion and proliferation. Moreover, the scaffold can obviously inhibit proliferation of Staphylococcus aureus and Serratia marcescens, exhibiting its unique antibacterial effect. The two-compartment and bi-functional dermal scaffolds can be a promising candidate for skin regeneration.
- Subjects :
- Vascular Endothelial Growth Factor A
Scaffold
Staphylococcus aureus
Materials science
Angiogenesis
Cell Survival
Bioengineering
Biocompatible Materials
Cell Line
Biomaterials
Chitosan
chemistry.chemical_compound
Mice
Dermis
medicine
Animals
Humans
Cell adhesion
Serratia marcescens
Cell Proliferation
Skin, Artificial
Tissue Engineering
Tissue Scaffolds
Regeneration (biology)
Anatomy
Fibroblasts
In vitro
Microspheres
medicine.anatomical_structure
chemistry
Mechanics of Materials
Drug delivery
Biophysics
Collagen
Polyglycolic Acid
Subjects
Details
- ISSN :
- 18730191
- Volume :
- 52
- Database :
- OpenAIRE
- Journal :
- Materials scienceengineering. C, Materials for biological applications
- Accession number :
- edsair.doi.dedup.....a7e5db4b0dfbde3736d1ee78453b728a