Electrospun cellulose acetate/gelatin nanofibrous wound dressing containing berberine for diabetic foot ulcer healing: in vitro and in vivo studies

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作者
Hadi Samadian
Sina Zamiri
Arian Ehterami
Saeed Farzamfar
Ahmad Vaez
Hossein Khastar
Mostafa Alam
Armin Ai
Hossein Derakhshankhah
Zahra Allahyari
Arash Goodarzi
Majid Salehi
机构
[1] Pharmaceutical Sciences Research Center,Department of Kinesiology and Health Science
[2] Health Institute,Department of Mechanical Engineering
[3] Kermanshah University of Medical Sciences,Department of Tissue Engineering and Applied Cell Sciences, School of Advanced Technologies in Medicine
[4] York University,Department of Tissue Engineering and Applied Cell Sciences, School of Advanced Medical Sciences and Technologies
[5] Science and Research Branch,School of Medicine
[6] Islamic Azad University,Department of Oral and Maxillofacial Surgery
[7] Tehran University of Medical Sciences,Department of Microsystems Engineering
[8] Shiraz University of Medical Sciences,Department of Tissue Engineering
[9] Shahroud University of Medical Sciences,Department of Tissue Engineering, School of Medicine
[10] Dental School,undefined
[11] Shahid Beheshti University of Medical sciences,undefined
[12] Dental student of scientific research center,undefined
[13] faculty of dentistry,undefined
[14] Tehran university of medical sciences,undefined
[15] Department of Biomedical Engineering,undefined
[16] Rochester Institute of Technology,undefined
[17] Rochester Institute of Technology,undefined
[18] School of Advanced Technologies,undefined
[19] Fasa University of Medical Sciences,undefined
[20] Shahroud University of Medical Sciences,undefined
[21] Tissue Engineering and stem cells research center,undefined
[22] Shahroud University of Medical Sciences,undefined
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摘要
Functional wound dressing with tailored physicochemical and biological properties is vital for diabetic foot ulcer (DFU) treatment. Our main objective in the current study was to fabricate Cellulose Acetate/Gelatin (CA/Gel) electrospun mat loaded with berberine (Beri) as the DFU-specific wound dressing. The wound healing efficacy of the fabricated dressings was evaluated in streptozotocin-induced diabetic rats. The results demonstrated an average nanofiber diameter of 502 ± 150 nm, and the tensile strength, contact angle, porosity, water vapor permeability and water uptake ratio of CA/Gel nanofibers were around 2.83 ± 0.08 MPa, 58.07 ± 2.35°, 78.17 ± 1.04%, 11.23 ± 1.05 mg/cm2/hr, and 12.78 ± 0.32%, respectively, while these values for CA/Gel/Beri nanofibers were 2.69 ± 0.05 MPa, 56.93 ± 1°, 76.17 ± 0.76%, 10.17 ± 0.21 mg/cm2/hr, and 14.37 ± 0.42%, respectively. The antibacterial evaluations demonstrated that the dressings exhibited potent antibacterial activity. The collagen density of 88.8 ± 6.7% and the angiogenesis score of 19.8 ± 3.8 obtained in the animal studies indicate a proper wound healing. These findings implied that the incorporation of berberine did not compromise the physical properties of dressing, while improving the biological activities. In conclusion, our results indicated that the prepared mat is a proper wound dressing for DFU management and treatment.
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