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Curcumin coated 3D biocomposite scaffolds based on chitosan and cellulose for diabetic wound healing

The objective of present work is to fabricate porous three-dimensional biocomposite scaffolds with interconnected pore networks and mechanical strength for wound healing. Variable concentrations of chitosan and methylcellulose hydrogels were blended in the presence of calcium cations to prepare scaf...

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Autores principales: Gupta, Megha, Sharma, Arpit, Beniwal, Chandra Shekhar, Tyagi, Priyanka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9660602/
https://www.ncbi.nlm.nih.gov/pubmed/36387457
http://dx.doi.org/10.1016/j.heliyon.2022.e11442
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author Gupta, Megha
Sharma, Arpit
Beniwal, Chandra Shekhar
Tyagi, Priyanka
author_facet Gupta, Megha
Sharma, Arpit
Beniwal, Chandra Shekhar
Tyagi, Priyanka
author_sort Gupta, Megha
collection PubMed
description The objective of present work is to fabricate porous three-dimensional biocomposite scaffolds with interconnected pore networks and mechanical strength for wound healing. Variable concentrations of chitosan and methylcellulose hydrogels were blended in the presence of calcium cations to prepare scaffolds by freeze-drying method. Curcumin-aerosol was deposited over the scaffold surface to improve antimicrobial efficacy. Scaffold stability and curcumin interaction were evaluated by Differential Scanning Calorimeter, Thermal Gravimetric Analyzer and Fourier Transform Infrared Spectrophotometer. Scanning Electron Microscopy indicate multi-layered porosity, mesh-like structure and pore-size ranging from 50 to 500 μm. Erythrocyte interaction with chitosan and methylcellulose using Surface Plasmon Resonance assay in the presence of curcumin depicted high binding affinity of chitosan alone than curcumin. The antibacterial activity of SCF-4C against Escherichia coli and Staphylococcus aureus and the instant haemostasis in erythrocyte-agglutination assay by SCF-7 indicate good material properties for wound treatment. Bleeding time and wound healing efficacy conducted on Sprague Dawley rats depict minimum clotting time of SCF-4 (∼32 ± 2 s) compared to SCF-4C (∼45 ± 2 s), while highest ∼85 ± 5 s was observed in curcumin alone. SCF-4C exhibit complete wound healing on day14 in diabetic animals. In-vivo studies confirmed that high concentration of chitosan in presence of curcumin enhances diabetic wound healing process.
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spelling pubmed-96606022022-11-15 Curcumin coated 3D biocomposite scaffolds based on chitosan and cellulose for diabetic wound healing Gupta, Megha Sharma, Arpit Beniwal, Chandra Shekhar Tyagi, Priyanka Heliyon Research Article The objective of present work is to fabricate porous three-dimensional biocomposite scaffolds with interconnected pore networks and mechanical strength for wound healing. Variable concentrations of chitosan and methylcellulose hydrogels were blended in the presence of calcium cations to prepare scaffolds by freeze-drying method. Curcumin-aerosol was deposited over the scaffold surface to improve antimicrobial efficacy. Scaffold stability and curcumin interaction were evaluated by Differential Scanning Calorimeter, Thermal Gravimetric Analyzer and Fourier Transform Infrared Spectrophotometer. Scanning Electron Microscopy indicate multi-layered porosity, mesh-like structure and pore-size ranging from 50 to 500 μm. Erythrocyte interaction with chitosan and methylcellulose using Surface Plasmon Resonance assay in the presence of curcumin depicted high binding affinity of chitosan alone than curcumin. The antibacterial activity of SCF-4C against Escherichia coli and Staphylococcus aureus and the instant haemostasis in erythrocyte-agglutination assay by SCF-7 indicate good material properties for wound treatment. Bleeding time and wound healing efficacy conducted on Sprague Dawley rats depict minimum clotting time of SCF-4 (∼32 ± 2 s) compared to SCF-4C (∼45 ± 2 s), while highest ∼85 ± 5 s was observed in curcumin alone. SCF-4C exhibit complete wound healing on day14 in diabetic animals. In-vivo studies confirmed that high concentration of chitosan in presence of curcumin enhances diabetic wound healing process. Elsevier 2022-11-07 /pmc/articles/PMC9660602/ /pubmed/36387457 http://dx.doi.org/10.1016/j.heliyon.2022.e11442 Text en © 2022 Published by Elsevier Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Gupta, Megha
Sharma, Arpit
Beniwal, Chandra Shekhar
Tyagi, Priyanka
Curcumin coated 3D biocomposite scaffolds based on chitosan and cellulose for diabetic wound healing
title Curcumin coated 3D biocomposite scaffolds based on chitosan and cellulose for diabetic wound healing
title_full Curcumin coated 3D biocomposite scaffolds based on chitosan and cellulose for diabetic wound healing
title_fullStr Curcumin coated 3D biocomposite scaffolds based on chitosan and cellulose for diabetic wound healing
title_full_unstemmed Curcumin coated 3D biocomposite scaffolds based on chitosan and cellulose for diabetic wound healing
title_short Curcumin coated 3D biocomposite scaffolds based on chitosan and cellulose for diabetic wound healing
title_sort curcumin coated 3d biocomposite scaffolds based on chitosan and cellulose for diabetic wound healing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9660602/
https://www.ncbi.nlm.nih.gov/pubmed/36387457
http://dx.doi.org/10.1016/j.heliyon.2022.e11442
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