Bakitian Fahad A
Department of Restorative Dentistry, Faculty of Dental Medicine, Umm Al-Qura University, Makkah, SAU.
Cureus. 2024 Sep 5;16(9):e68720. doi: 10.7759/cureus.68720. eCollection 2024 Sep.
Titanium dental implants with various restorative options are popular for replacing missing teeth due to their comfortable fit, excellent stability, natural appearance, and impressive track record in clinical settings. However, challenges such as potential issues with osseointegration, peri-implant bone loss, and peri-implantitis might lead to implant failure, causing concern for patients and dental staff. Surface modification has the potential to significantly enhance the success rate of titanium implants and meet the needs of clinical applications. This involves the application of various physical, chemical, and bioactive coatings, as well as adjustments to implant surface topography, offering significant potential for enhancing implant outcomes in terms of osseointegration and antimicrobial properties. Many surface modification methods have been employed to improve titanium implants, showcasing the diversity of approaches in this field including sandblasting, acid etching, plasma spraying, plasma immersion ion implantation, physical vapor deposition, electrophoretic deposition, electrochemical deposition, anodization, microarc oxidation, laser treatments, sol-gel method, layer-by-layer self-assembly technology, and the adsorption of biomolecules. This article provides a comprehensive overview of the surface modification methods for titanium implants to address issues with insufficient osseointegration and implant-related infections. It encompasses the physical, chemical, and biological aspects of these methods to provide researchers and dental professionals with a robust resource to aid them in their study and practical use of dental implant materials, ensuring they are thoroughly knowledgeable and well-prepared for their endeavors.
具有各种修复选项的钛牙种植体因佩戴舒适、稳定性极佳、外观自然以及在临床环境中有出色的记录而在牙齿缺失修复中广受欢迎。然而,诸如骨结合潜在问题、种植体周围骨质流失和种植体周围炎等挑战可能导致种植失败,这引起了患者和牙科工作人员的担忧。表面改性有潜力显著提高钛种植体的成功率并满足临床应用需求。这涉及应用各种物理、化学和生物活性涂层,以及调整种植体表面形貌,在骨结合和抗菌性能方面为提高种植效果提供了巨大潜力。许多表面改性方法已被用于改进钛种植体,展示了该领域方法的多样性,包括喷砂、酸蚀、等离子喷涂、等离子浸没离子注入、物理气相沉积、电泳沉积、电化学沉积、阳极氧化、微弧氧化、激光处理、溶胶 - 凝胶法、层层自组装技术以及生物分子吸附。本文全面概述了钛种植体的表面改性方法,以解决骨结合不足和种植体相关感染问题。它涵盖了这些方法的物理、化学和生物学方面,为研究人员和牙科专业人员提供了丰富的资源,帮助他们在牙科种植材料的研究和实际应用中,确保他们具备充分的知识并为其工作做好充分准备。