Kandula Uday Kumar Reddy, Monika Dhoodi, Verma Piyush Chandra, Rathi Ajita, Saravanan Prabakaran
Department of Mechanical Engineering, Birla Institute of Technology and Science (BITS), Pilani-Hyderabad Campus, Hyderabad, India.
Department of Electronics & Communication Engineering, JNTUH University College of Engineering, Hyderabad, India.
3D Print Addit Manuf. 2024 Aug 20;11(4):1441-1461. doi: 10.1089/3dp.2023.0064. eCollection 2024 Aug.
Aging, tooth trauma, and pathological infections cause partial or total tooth loss, leading to the usage of dental implants for restoration treatments. As such, mechanical and tribological properties play an important role in the osseointegration and durability of these implants. Metallic and ceramic implants are shown to have mechanical properties much higher than the natural teeth structure, leading to stress shielding-related failure of an implant. Stress shielding occurs due to the difference in the elastic modulus between the implant material and the surrounding teeth structure, leading to bone loss and implant failure. The implant's properties (i.e., mechanical) should be as close as human teeth components. To achieve this, various materials and coatings are being developed and investigated. This review is a comprehensive survey of materials, manufacturing, coating techniques, and mechanical and tribological characterizations of dental implants, with a particular focus on polyetheretherketone (PEEK) as a potential alternative dental implant material. PEEK has mechanical properties similar to natural teeth, which make it a promising material for dental implants. The findings of this review suggest that PEEK offers superior biocompatibility, osseointegration, and wear resistance for implant applications. With the help of bioactive coatings, bone growth on the implant surface can be promoted. In addition, PEEK dental implants made using three-dimensional (3D) printing technology can significantly reduce the cost of implants, making them more affordable and increasing access to dental care, which can improve oral health significantly. In summary, this review highlights the potential of PEEK as a promising alternative dental implant material, and provides an overview of various techniques, testing, and future directions for PEEK dental implants.
衰老、牙齿外伤和病理性感染会导致部分或全部牙齿缺失,从而促使人们使用牙种植体进行修复治疗。因此,机械性能和摩擦学性能在这些种植体的骨整合和耐久性方面起着重要作用。金属和陶瓷种植体的机械性能远高于天然牙齿结构,这会导致种植体出现与应力屏蔽相关的失效。应力屏蔽的发生是由于种植体材料与周围牙齿结构之间弹性模量的差异,进而导致骨质流失和种植体失效。种植体的性能(即机械性能)应尽可能接近人类牙齿的组成部分。为了实现这一目标,人们正在研发和研究各种材料及涂层。本综述全面调查了牙种植体的材料、制造、涂层技术以及机械和摩擦学特性,特别关注聚醚醚酮(PEEK)作为一种潜在的替代牙种植体材料。PEEK具有与天然牙齿相似的机械性能,这使其成为牙种植体的一种有前途的材料。本综述的研究结果表明,PEEK在种植体应用方面具有卓越的生物相容性、骨整合性和耐磨性。借助生物活性涂层,可以促进种植体表面的骨生长。此外,使用三维(3D)打印技术制造的PEEK牙种植体可以显著降低种植体成本,使其更具可及性并增加牙科护理的可及性,从而显著改善口腔健康。总之,本综述强调了PEEK作为一种有前途的替代牙种植体材料的潜力,并概述了PEEK牙种植体的各种技术、测试和未来发展方向。