Development and Evaluation of Fucoidan-Loaded Electrospun Polyvinyl Alcohol/Levan Nanofibers for Wound Dressing Applications

Author:

Ismayilova Natavan12,Zia Muhammad Khaqan3,Akkaya Hatice Selen4,Ulag Songul256ORCID,Guldorum Yeliz27,Oner Ebru Toksoy8ORCID,Ince Erol1,Duta Liviu9ORCID,Gunduz Oguzhan25ORCID

Affiliation:

1. Chemical Engineering Department, Engineering Faculty, Istanbul University-Cerrahpasa, 34320 Istanbul, Turkey

2. Center for Nanotechnology & Biomaterials Application and Research (NBUAM), Marmara University, 34722 Istanbul, Turkey

3. Interdisciplinary Research Centre in Biomedical Materials (IRCBM), COMSATS University Islamabad, Lahore Campus, Lahore 54000, Pakistan

4. Biomedical Engineering Department, Rheinisch-Westfälische Technische Hochschule Aachen, Faculty of Medicine, 65428 Aachen, Germany

5. Department of Metallurgical and Materials Engineering, Faculty of Technology, Marmara University, 34722 Istanbul, Turkey

6. Health Institutes of Türkiye (TUSEB), 34718 Istanbul, Turkey

7. Department of Biomedical Engineering, Electrical and Electronics Faculty, Yildiz Technical University, 34210 Istanbul, Turkey

8. IBSB—Industrial Biotechnology and Systems Biology Research Group, Department of Bioengineering, Marmara University, 34722 Istanbul, Turkey

9. Lasers Department, National Institute for Laser, Plasma and Radiation Physics, 077125 Magurele, Romania

Abstract

Wound dressing is an ancient technique for promoting healing, and modern technology has led to the development of advanced dressings that enhance patient care. Nanofiber-based wound dressings are a medical innovation with enhanced properties, including improved adhesion, reduced infection rates, and increased tissue regeneration. This article focuses on electrospun nanofibrous wound dressing materials produced using the widely adopted method of electrospinning. This article explores several parameters that influence fiber size, including electrical conductivity, electric potential, collector distance, viscosity, flow rate, and surface tension. With Fucoidan (FUC) loading, an increase in the fiber diameter of the control group from 310 nm to 395 nm was observed. This research also examines the use of Halomonas Levan (HL), a polysaccharide, and polyvinyl alcohol (PVA) polymer as wound dressing materials to enhance the mechanical properties of the latter. The incorporation of various concentrations of FUC into PVA-HL electrospun nanofibers yielded diverse effects on tensile strength: an enhancement was observed in the PVA-HL-10FUC formulation, while reductions were noted in the PVA-HL-13FUC and PVA-HL-15FUC formulations. The WST1 assay demonstrated that none of the samples exhibited cytotoxicity up to 72 h, as cell viability increased over time. In conclusion, nanofibrous PVA-HL structures loaded with FUC, which promote tissue regeneration and prevent infection, could be considered a novel wound dressing material.

Publisher

MDPI AG

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