Fabrication and characterization of polyvinyl alcohol/TiO2 membrane immersed in simulated body fluid for biomedical application

Author:

Nguyen Dien Thi My12,Huynh Khanh Do Gia12,Nguyen Thuy Thanh Doan12,Huynh Vu Tan12,Nguyen Phuong Tuyet12,Nguyen Linh Thuy Ba3

Affiliation:

1. Faculty of Chemistry, University of Science 227 Nguyen Van Cu, Ward 4, District 5 Ho Chi Minh City 70000 Viet Nam

2. Vietnam National University Ho Chi Minh City Linh Trung Ward, Thu Duc City Ho Chi Minh City 70000 Viet Nam

3. Division of Biomaterials and Tissue Engineering, Eastman Dental Institute, University College London, Royal Free Hospital London United Kingdom

Abstract

AbstractIn this study, we synthesized hydroxyapatite (HA) on polyvinyl alcohol/TiO2 (PVA/TiO2) in which TiO2 was prepared by the sol‐gel method. HA was formed by immersing the membrane in the simulated body fluid (SBF) solution. We improved the mechanical strength of the membranes by adding glutaraldehyde (GA) combining with heat treatment to cross‐link the polymer network. In addition, the composition of TiO2 crystalline phase, TiO2 content in each membrane, and the duration of membrane immersion in SBF solution were investigated. The morphological structures of hydroxyapatite/polyvinyl alcohol/TiO2 (HA/PVA/TiO2) membranes were characterized by IR, SEM, and XRD. We confirmed that the HA formation depended on the TiO2 content and phase composition (rutile or anatase). Membranes containing TiO2 rutile‐phase showed more pronounced HA formation than membranes containing TiO2 anatase‐phase. The appearance of HA also depended on SBF immersion duration. Membranes soaked for 3 weeks showed significantly more HA formation than membranes soaked for 1 and 2 weeks. Furthermore, the number of cells in membranes soaked for 3 weeks was clearly higher than in other membranes. Finally, HA/PVA/TiO2 membranes containing 25 wt.% of TiO2 rutile‐phase are biocompatible based on the number of viable cells and thus have the potential for biomedical application.

Publisher

Wiley

Reference26 articles.

1. Synthesis of hydroxyapatite for biomedical applications

2. Hydroxyapatite synthesis methodologies: an overview;Nayak AK;International Journal of ChemTech Research,2010

3. Sol-Gel Derived Hydroxyapatite Coatings for Titanium Implants: A Review

4. Apatite formation on TiO2 in simulated body fluid

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