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A state-of-the-art review of the fabrication and characteristics of titanium and its alloys for biomedical applications

生物相容性 材料科学 钛合金 纳米技术 生物材料 腐蚀 纳米医学 骨整合 生物医学工程 冶金 植入 合金 纳米颗粒 医学 外科
作者
Masoud Sarraf,Erfan Rezvani Ghomi,S. Alipour,Seeram Ramakrishna,Nazatul Liana Sukiman
出处
期刊:Bio-design and manufacturing [Springer Science+Business Media]
卷期号:5 (2): 371-395 被引量:357
标识
DOI:10.1007/s42242-021-00170-3
摘要

ABSTRACT: Commercially pure titanium and titanium alloys have been among the most commonly used materials for biomedical applications since the 1950s. Due to the excellent mechanical tribological properties, corrosion resistance, biocompatibility, and antibacterial properties of titanium, it is getting much attention as a biomaterial for implants. Furthermore, titanium promotes osseointegration without any additional adhesives by physically bonding with the living bone at the implant site. These properties are crucial for producing high-strength metallic alloys for biomedical applications. Titanium alloys are manufactured into the three types of α, β, and α + β. The scientific and clinical understanding of titanium and its potential applications, especially in the biomedical field, are still in the early stages. This review aims to establish a credible platform for the current and future roles of titanium in biomedicine. We first explore the developmental history of titanium. Then, we review the recent advancement of the utility of titanium in diverse biomedical areas, its functional properties, mechanisms of biocompatibility, host tissue responses, and various relevant antimicrobial strategies. Future research will be directed toward advanced manufacturing technologies, such as powder-based additive manufacturing, electron beam melting and laser melting deposition, as well as analyzing the effects of alloying elements on the biocompatibility, corrosion resistance, and mechanical properties of titanium. Moreover, the role of titania nanotubes in regenerative medicine and nanomedicine applications, such as localized drug delivery system, immunomodulatory agents, antibacterial agents, and hemocompatibility, is investigated, and the paper concludes with the future outlook of titanium alloys as biomaterials. GRAPHIC ABSTRACT: [Image: see text]
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