Fabrication and characterization of chlorhexidine gluconate loaded poly(vinyl alcohol)/45S5 nano‐bioactive glass nanofibrous membrane for guided tissue regeneration applications

Author:

Keçeciler‐Emir Ceren12ORCID,Başaran‐Elalmiş Yeliz13ORCID,Şahin Yeşim Müge45ORCID,Buluş Erdi56ORCID,Yücel Sevil13ORCID

Affiliation:

1. Faculty of Chemical and Metallurgical Engineering, Department of Bioengineering Yildiz Technical University Istanbul Turkey

2. Faculty of Rafet Kayis Engineering, Genetic and Bioengineering Department Alanya Alaaddin Keykubat University Antalya Turkey

3. Health Biotechnology Joint Research and Application Center of Excellence Istanbul Turkey

4. Faculty of Engineering, Department of Biomedical Engineering İstanbul Arel University İstanbul Turkey

5. Polymer Technologies and Composite Application and Research Center İstanbul Arel University İstanbul Turkey

6. Department of Transportation Services Civil Aviation Cabin Services Program, Vocational School Istanbul Arel University Istanbul Turkey

Abstract

AbstractPolymeric barrier membranes are used in periodontal applications to prevent fibroblastic cell migration into the cavities of bone tissue and to properly guide the proliferation of tissues. In this study, the fabrication, characterization, bioactivity, and in vitro biological properties of polyvinyl alcohol‐based nanofibrous membranes containing nano‐sized 45S5 bioactive glass (BG) loaded with chlorhexidine (CH) gluconate with biocompatible, bioactive, and antibacterial properties for using as dental barrier membranes were investigated. Nanofibrous membranes with an average fiber diameter, pore size, and porosity of 210 nm, 24.73 μm, and 12.42%, respectively, were loaded with 1% and 2% CH, and the release profile was investigated. The presence of BG in the membranes promoted fibroblastic proliferation and the presence of CH provided antibacterial properties. Nanofibrous membranes exhibit a high ability to restrict bacterial growth while fulfilling the necessary conditions for use as a dental barrier thanks to their low swelling rates, significant surface bioactivities, and appropriate degradation levels.

Publisher

Wiley

Subject

Organic Chemistry,Biomaterials,Biochemistry,General Medicine,Biophysics

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