In-vitro biocompatibility evaluation of cast Ni–Ti alloy produced by vacuum arc melting technique for biomedical and dental applications
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Published:2022-10-07
Issue:2
Volume:77
Page:847-858
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ISSN:0366-6352
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Container-title:Chemical Papers
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language:en
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Short-container-title:Chem. Pap.
Author:
Ibrahim Khaled M.,
Safwat Engie M.,
Ghayad Ibrahim M.,
El-Hadad ShimaaORCID
Abstract
AbstractThe investigated cast Ni50–Ti50 shape memory alloy was prepared using a vacuum arc furnace. The cast samples were subjected to in-vitro biocompatibility studies according to ISO 10993-12:2004, and compared to other samples Ni–Ti orthodontic wires commercially available at the dental market. The cast samples were hydroxyapatite-coated using the electrodeposition technique. The effect of surface treatment on the coating quality was addressed. The hydroxyapatite-coated samples were investigated using electrochemical impedance (EIS) and potentiodynamic techniques. Coated samples were also examined using a scanning electron microscope to inspect the coating morphology. Cytotoxicity tests on MG63 and H9C2 cell lines showed the safety and biocompatibility of the cast NiTi alloy, with a direct relationship between the incubation period of the tested samples and cell viability. Well-adhered hydroxyapatite coating was obtained on the surface-treated NiTi samples using the electrodeposition technique. EDS analysis showed a hydroxyapatite coating having a calcium to phosphorus ratio close to that of the natural bone. Electrochemical tests indicated that the highest corrosion resistance was obtained for the uncoated samples followed by the anodized sample and finally the hydroxyapatite-coated samples due to their high porosity.
Funder
Science and Technology Postgraduate Education and Research Development Office, Office of the Higher Education Commission
Central Metallurgical Research and Development Institute
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Industrial and Manufacturing Engineering,General Chemical Engineering,Biochemistry,General Chemistry
Reference41 articles.
1. Abdel-Salam M, El-Hadad S, Khalifa W (2019) Effects of microstructure and alloy composition on hydroxyapatite precipitation on alkaline treated α/β titanium alloys. Materials Science and Engineering C 104: no. 109974.
2. Abdulhamid SA, Ghayad IM, Kandemirli F (2018) Electroless plating of Ni-B composite coating on AZ31 Mg alloy. Inter Cast Metal Res 10:11–19
3. Alina S, Alexandru S, Tudor P, Alina M, Zetui IN (2015) Assessment of orthodontic biomaterials’ cytotoxicity: an in vitro study on cell culture. Rom J Morphol Embryol 56:1119–1125
4. Aniołek K, Łosiewicz B, Kubisztal J, Osak P, Stróz A, Barylski A, Kaptacz S (2021) Mechanical properties, corrosion resistance and bioactivity of oxide layers formed by isothermal oxidation of Ti-6Al-7Nb alloy. Coatings 11:505
5. Assad M, LombardiBerne`che S, Desrosiers EA, Yahia L’H, Rivard CH, S (1994) Essais de cytotoxicite´ sur l’alliage a` me´moire de forme nickel–titane. Ann Chir 48:731–736
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