Saran Runki, Ginjupalli Kishore, George Sajan D, Chidangil Santhosh, V K Unnikrishnan
Department of Dental Materials, Manipal College of Dental Sciences, Manipal Academy of Higher Education, Manipal, 576104, India.
Department of Atomic and Molecular Physics, Manipal Academy of Higher Education, Manipal, 576104, India.
Heliyon. 2023 Jun 20;9(6):e17457. doi: 10.1016/j.heliyon.2023.e17457. eCollection 2023 Jun.
In recent years, the application of lasers for modifying the surface topography of dental biomaterials has received increased attention. This review paper aims to provide an overview of the current status on the utilization of lasers as a potential tool for surface modification of dental biomaterials such as implants, ceramics, and other materials used for restorative purposes. A literature search was done for articles related to the use of lasers for surface modification of dental biomaterials in English language published between October 2000 and March 2023 in Scopus, Pubmed and web of science, and relevant articles were reviewed. Lasers have been mainly used for surface modification of implant materials (71%), especially titanium and its alloys, to promote osseointegration. In recent years, laser texturing has also emerged as a promising technique to reduce bacterial adhesion on titanium implant surfaces. Currently, lasers are being widely used for surface modifications to improve osseointegration and reduce peri-implant inflammation of ceramic implants and to enhance the retention of ceramic restorations to the tooth. The studies considered in this review seem to suggest laser texturing to be more proficient than the conventional methods of surface modification. Lasers can alter the surface characteristics of dental biomaterials by creating innovative surface patterns without significantly affecting their bulk properties. With advances in laser technology and availability of newer wavelengths and modes, laser as a tool for surface modification of dental biomaterials is a promising field, with excellent potential for future research.
近年来,激光在牙科生物材料表面形貌改性方面的应用受到了越来越多的关注。这篇综述文章旨在概述激光作为一种潜在工具用于牙科生物材料(如植入物、陶瓷以及其他用于修复目的的材料)表面改性的现状。在Scopus、Pubmed和科学网中对2000年10月至2023年3月期间发表的有关激光用于牙科生物材料表面改性的英文文章进行了文献检索,并对相关文章进行了综述。激光主要用于植入材料(71%)的表面改性,尤其是钛及其合金,以促进骨整合。近年来,激光纹理化也已成为一种有前景的技术,可减少细菌在钛植入物表面的粘附。目前,激光正被广泛用于表面改性,以改善陶瓷植入物的骨整合并减少种植体周围炎症,以及增强陶瓷修复体与牙齿的固位。本综述中考虑的研究似乎表明激光纹理化比传统的表面改性方法更有效。激光可以通过创造创新的表面图案来改变牙科生物材料的表面特性,而不会显著影响其整体性能。随着激光技术的进步以及新波长和模式的出现,激光作为牙科生物材料表面改性的工具是一个有前景的领域,具有出色的未来研究潜力。