A Novel Bilayer Wound Dressing Composed of a Dense Polyurethane/Propolis Membrane and a Biodegradable Polycaprolactone/Gelatin Nanofibrous Scaffold

(2020) A Novel Bilayer Wound Dressing Composed of a Dense Polyurethane/Propolis Membrane and a Biodegradable Polycaprolactone/Gelatin Nanofibrous Scaffold. Scientific Reports. ISSN 2045-2322

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Abstract

One-layer wound dressings cannot meet all the clinical needs due to their individual characteristics and shortcomings. Therefore, bilayer wound dressings which are composed of two layers with different properties have gained lots of attention. In the present study, polycaprolactone/gelatin (PCL/Gel) scaffold was electrospun on a dense membrane composed of polyurethane and ethanolic extract of propolis (PU/EEP). The PU/EEP membrane was used as the top layer to protect the wound area from external contamination and dehydration, while the PCL/Gel scaffold was used as the sublayer to facilitate cells' adhesion and proliferation. The bilayer wound dressing was investigated regarding its microstructure, mechanical properties, surface wettability, anti-bacterial activity, biodegradability, biocompatibility, and its efficacy in the animal wound model and histopathological analyzes. Scanning electron micrographs exhibited uniform morphology and bead-free structure of the PCL/Gel scaffold with average fibers' diameter of 237.3 +/- 65.1 nm. Significant anti-bacterial activity was observed against Staphylococcal aureus (5.4 +/- 0.3 mm), Escherichia coli (1.9 +/- 0.4 mm) and Staphylococcus epidermidis (1.0 +/- 0.2 mm) according to inhibition zone test. The bilayer wound dressing exhibited high hydrophilicity (51.1 +/- 4.9 degrees), biodegradability, and biocompatibility. The bilayer wound dressing could significantly accelerate the wound closure and collagen deposition in the Wistar rats' skin wound model. Taking together, the PU/EEP-PCL/Gel bilayer wound dressing can be a potential candidate for biomedical applications due to remarkable mechanical properties, biocompatibility, antibacterial features, and wound healing activities.

Item Type: Article
Keywords: IN-VITRO ELECTROSPUN NANOFIBERS PCL/GELATIN PROPOLIS CHITOSAN GELATIN FABRICATION POLYMERS RELEASE FIBERS
Subjects: W General Medicine. Health Professions > W 82-83.1 Biomedical Technology
Divisions: Biosensor research center
Cancer Prevention Research Center
Faculty of Health > Department of Environmental Health Engineering
Faculty of Medicine > Department of Basic Science > Department of Microbiology
School of Advanced Technologies in Medicine > Department of Biomaterials, Nanotechnology and Tissue Engineering
Journal or Publication Title: Scientific Reports
Journal Index: ISI
Volume: 10
Number: 1
Identification Number: https://doi.org/10.1038/s41598-020-59931-2
ISSN: 2045-2322
Depositing User: Zahra Otroj
URI: http://eprints.mui.ac.ir/id/eprint/12451

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