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Development of Zinc-Doped Titanium Dioxide Coatings with Enhanced Biocompatibility for Biomedical Application

  • Minseo Yu (Department of Materials Science & Engineering, Chonnam National University) ;
  • Yo Han Song (Department of Chemistry, Gwangju Institute of Science and Technology (GIST)) ;
  • Mi-Kyung Han (Department of Materials Science & Engineering, Chonnam National University)
  • Received : 2024.07.11
  • Accepted : 2024.07.18
  • Published : 2024.08.27

Abstract

The surface of titanium (Ti) dental implants was modified by applying a zinc (Zn)-doped titanium dioxide (TiO2) coating. Initially, the Ti surfaces were etched with NaOH, followed by a hydrolysis co-condensation using tetrabutyl titanate (TBT, Ti(OC4H9)4) and zinc nitrate hexahydrate (Zn(NO3)2·6H2O), with ammonia water (NH3·H2O) acting as a hydroxide anion source. The morphology and chemical composition of the Zn-doped TiO2-coated Ti plates were characterized using X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Raman spectroscopy, and scanning electron microscopy (SEM). Synthesis temperatures were carefully adjusted to produce anatase Zn-doped TiO2 nanoparticles with a bipyramidal structure and approximate sizes of 100 nm. Wettability tests and cell viability assays demonstrated the biomedical potential of these modified surfaces, which showed high biocompatibility with a survival rate of over 95 % (p < 0.05) and improved wettability. Corrosion resistance tests using potentiodynamic polarization reveal that Zn-TiO2-treated samples with an anatase crystal structure exhibited a lower corrosion current density and more noble corrosion potential compared to samples coated with a rutile structure. This method offers a scalable approach that could be adapted by the biomaterial industry to improve the functionality and longevity of various biomedical implants.

Keywords

Acknowledgement

This work was supported by the National Research Foundation of Korea (NRF) grant funded by the Ministry of Science and the Korean Government (MSIP), Republic of Korea (No. 2021R1A2C1007407).

References

  1. W. Becker, P. Hujoel, B. Becker and P. Wohrle, Clin. Implant Dent. Relat. Res., 18, 473 (2016). 
  2. W. Abd-Elaziem, M. A. Darwish, A. Hamada and W. M. Daoush, Mater. Des., 241, 112850 (2024). 
  3. H. Chouirfa, H. Bouloussa, V. Migonney and C. Falentin-Daudre, Acta Biomater., 83, 37 (2019). 
  4. A. Jaafar, C. Hecker, P. Arki and Y. Joseph, Bioengineering, 7, 127 (2020). 
  5. K. Li, Y. Xue, L. Zhang and Y. Han, Biomater. Sci., 8, 6004 (2020). 
  6. Y. Wan, Z. Zhao, M. Yu, Z. Ji, T. Wang, Y. Cai, C. Liu and Z. Liu, J. Mater. Sci. Technol., 131, 240 (2022). 
  7. Y. Ren, Z. Sun, Y. Huang, X. An, X. Bian, Z. Cao, Y. Liu, K. Javed, T. Derkach and X. Li, Part. Part. Syst. Charact., 41, 2300191 (2024). 
  8. L. Andelkovic, M. Suljagic, V. Pavlovic, M. Mirkovic, B. Vrbica, I. Novakovic, D. Stankovic, A. Kremenovic and V. Uskokovic, Colloids Surf., A, 691, 133890 (2024). 
  9. J. Tang, F. Wei, L. Zhao, L. Yang, J. Li, Z. Sun, C. Yang, W. Zhang and B. Liu, Ceram. Int., 50, 1370 (2024). 
  10. N. Wu, H. Gao, X. Wang and X. Pei, ACS Biomater. Sci. Eng., 9, 2970 (2023). 
  11. C. J. Querebillo, Nanomaterials, 13, 982 (2023). 
  12. D. T. S. L. Mendes, G. R. L. Matos, S. A. S. de Araujo Souza, M. C. S. S. Macedo, D. D. S. Tavares and C. X. Resende, J. Prosthet. Dent., S0022-3913, 00328-6 (2022). 
  13. A. A. L. Sepulveda, A. M. A. Velasquez, I. A. P. Linares, L. de Almeida, C. R. Fontana, C. Garcia and M. A. S. Graminha, Photodiagn. Photodyn. Ther., 30, 101676 (2020). 
  14. Z. Wang, X. Wang, Y. Wang, Y. Zhu, X. Liu and Q. Zhou, J. Nanobiotechnol., 19, 353 (2021). 
  15. Z.-H. Tang, S. Su, Y. Liu, W.-Q. Zhu and S.-M. Zhang, Front. Mater., 8, 739071 (2021). 
  16. S.-Y. Shao, J.-X. Chen, H.-Y. Tang, P.-P. Ming, J. Yang, W.-Q. Zhu, S.-M. Zhang and Q. Jing, Appl. Surf. Sci., 515, 146107 (2020). 
  17. P. V. Sreya, A. M. Mathew, V. I. Chukwuike, K. Venkatesan, S. Raveendran, R. C. Barik and D. K. Pattanayak, Surf. Interfaces, 33, 102275 (2022). 
  18. K. Alvarez, M. Fukuda and O. Yamamoto, Clin. Implant Dent. Relat. Res., 12, e114 (2010). 
  19. A. G. Thomas, W. R. Flavell, A. K. Mallick, A. R. Kumarasinghe, D. Tsoutsou, N. Khan, C. Chatwin, S. Rayner, G. C. Smith, R. L. Stockbauer, S. Warren, T. K. Johal, S. Patel, D. Holland, A. Taleb and F. Wiame, Phys. Rev. B, 75, 035105 (2007). 
  20. S. I. Tanaka, M. Aonuma, N. Hirose and T. Tanaki, J. Electrochem. Soc., 149, D167 (2002). 
  21. A. S. Kamble, B. B. Sinha, K. Chung, M. G. Gil, V. Burungale, C.-J. Park, J. H. Kim and P. S. Patil, Electrochim. Acta, 149, 386 (2014). 
  22. F. Karlsruhe, ICSD, Eggenstein-Leopoldshafen, Germany, 1998. Retrieved March 15, 2024 from https://icsd.fiz-karlsruhe.de/index.xhtml 
  23. S. Latif, K. Tahir, A. U. Khan, F. Abdulaziz, A. Arooj, T. Y. A. Alanazi, V. Rakic, A. Khan and V. Jevtovic, Inorg. Chem. Commun., 146, 110091 (2022). 
  24. R. P. Antony, A. Dasgupta, S. Mahana, D. Topwal, T. Mathews and S. Dhara, J. Raman Spectrosc., 46, 231 (2015). 
  25. A. Sobolev, A. Kossenko and K. Borodianskiy, Materials, 12, 3983 (2019). 
  26. H.-Y. Liu, IEEE Trans. Electron Devices, 64, 1108 (2017). 
  27. Y. Xia, C. Rong, X. Yang, F. Lu and X. Kuang, Front. Mater., 6, 1 (2019). 
  28. K. Bhattacharyya, A. Danon, B. K. Vijayan, K. A. Gray, P. C. Stair and E. Weitz, J. Phys. Chem. C, 117, 12661 (2013). 
  29. T. Oh, Korean J. Mater. Res., 23, 580 (2013). 
  30. B. Li, J. Li, C. Liang, H. Li, L. Guo, S. Liu and H. Wang, Rare Met. Mater. Eng., 45, 858 (2016). 
  31. Y. Li, Y. You, B. Li, Y. Song, A. Ma, B. Chen, W. Han and C. Li, J. Hard Tissue Biol., 28, 13 (2019). 
  32. P. Zhu, D. Dastan, L. Liu, L. Wu, Z. Shi, Q.-Q. Chu, F. Altaf and M. K. A. Mohammed, J. Mol. Graphics Modell., 118, 108335 (2023). 
  33. Y.-Y. Kuo, T.-H. Li, J.-N. Yao, C.-Y. Lin and C.-H. Chien, Electrochim. Acta, 78, 236 (2012). 
  34. M. Lampin, R. Warocquier-Clerout, C. Legris, M. Degrange and M. Sigot-Luizard, J. Biomed. Mater. Res., 36, 99 (1997). 
  35. P. Kumar, A. Nagarajan and P. D. Uchil, Cold Spring Harb Protoc., 2018, 469 (2018). 
  36. H. S. Magar, R. Y. A. Hassan and A. Mulchandani, Sensors, 21, 6578 (2021).