Evaluation of Burn Wound Healing Efficacy and Biocompatibility of Centella asiatica Mediated Synthesised AgNPs Loaded Hybrid Nanofiber Scaffold: In Vitro and In Vivo Studies

Author:

Bozkaya Ogün12ORCID,Bozkaya Esra3,Ekici Hüsamettin4,Alçığır Mehmet Eray5,Şahin Yaşar4,Aytuna Çerçi Nebahat3,Karahan Siyami6,Yiğitoğlu Mustafa7,Vargel İbrahim8

Affiliation:

1. Institute of Science Department of Bioengineering Hacettepe University Ankara 06800 Turkey

2. Scientific and Technological Research Application and Research Center Science and Engineering Laboratories Kırıkkale University Kırıkkale 71450 Turkey

3. Scientific and Technological Research Application and Research Center Health Sciences and Biotechnology Laboratories Kırıkkale University Kırıkkale 71450 Turkey

4. Faculty of Veterinary Medicine Department of Pharmacology and Toxicology Kırıkkale University Kırıkkale 71450 Turkey

5. Faculty of Veterinary Medicine Department of Veterinary Pathology Kırıkkale University Kırıkkale 71450 Turkey

6. Faculty of Veterinary Medicine Department of Histology and Embryology Kırıkkale University Kırıkkale 71450 Turkey

7. Faculty of Engineering and Natural Sciences Department of Bioengineering Kırıkkale University Kırıkkale 71450 Turkey

8. Faculty of Medicine Department of Plastic and Reconstructive Surgery Hacettepe University Ankara 06800 Turkey

Abstract

AbstractThe aim of this study is to evaluate the cell responses, potential skin reactions during the treatment process and burn wound healing efficacy of electrospun polycaprolactone/polyethylene oxide (PCL/PEO) nanofibers (NFs) containing Centella asiatica mediated synthesized silver nanoparticles (CA‐AgNPs) by in vitro and in vivo studies. Apoptosis‐necrosis, genotoxicity, hemolysis, and cell attachment studies are carried out within the scope of in vitro tests, and irritation, sensitivity, and burn wound studies are carried out within the scope of in vivo tests. The apoptotic index value of CA‐AgNPs‐[PCL/PEO] NFs material on L929 fibroblast cells is determined as 5.0 ± 1.0% at the highest concentration and the necrotic index value is 5.0 ± 0.3%. Micronucleus rates (%) of NFs treated with CHO (Chinese Hamster Ovary) cells are not at genotoxic level. The hemolytic index value of NFs dressing is determined as 0.23 ± 0.03%, The primary irritation index (PII) value of NFs wound dressing is calculated as 0.36 by irritation tests. In addition, the potential sensitization reaction of NFs extract on guinea pigs is evaluated and the sensitization score is determined as 0.9. The healing efficacy of NFs material on second‐degree burn wounds compared to a commercial product is supported by pathomorphological findings.

Publisher

Wiley

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