Department of Periodontology, Operative and Preventive Dentistry, Dental Faculty, University of Bonn, Welschnonnenstrasse 17, 53111, Bonn, Germany.
Center of Applied Medical Laser Research and Biomedical Optics (AMLaReBO), University of Bonn, Bonn, Germany.
Lasers Med Sci. 2020 Feb;35(1):13-30. doi: 10.1007/s10103-019-02859-5. Epub 2019 Aug 9.
Since the invention of lasers in dentistry, investigations in caries prevention by the use of laser radiation have been proposed. There are several mechanisms stated for this purpose such as photothermal and/or photochemical interaction processes with the enamel. Alone or in conjugation with topical fluoride application, this treatment modality may improve enamel acid resistance in high-caries-risk populations. Data collection was done by searching the keywords caries, prevention, and laser in PubMed, Embase, Web of Science, Cochrane Library, and Google Scholar. Lasing protocols of the collected literature and their effectiveness as well as examination methods used to verify treatment outcomes have been evaluated. One hundred eighteen publications were found for the last 10 years. The wavelengths investigated for caries prevention are mainly located in the near and the mid-infrared spectral range. In the evaluated period of time, investigations using CO; Er:YAG; Er,Cr:YSGG; Er:YLF; fundamental, second, and third harmonic generations of Nd:YAG; diodes; and argon ion lasers were found in the databases. Accounting for 39% of the literature, CO laser was the most examined system for this purpose. Reviewing the literature in this narrative review showed that all laser systems presented a positive effect in varying degrees. Laser irradiation could be an alternative or synergistic to topical fluoridation for enamel caries prevention with longer lasting effect. Further research should be focused on selecting proper laser settings to avoid damage to enamel and developing effective evidence-based clinical protocols.
自从激光在牙科中的发明以来,已经提出了利用激光辐射预防龋齿的研究。为此目的,有几种机制被陈述,例如与牙釉质的光热和/或光化学相互作用过程。单独或与局部氟化物应用联合使用,这种治疗方式可能会提高高龋风险人群的牙釉质耐酸性。通过在 PubMed、Embase、Web of Science、Cochrane Library 和 Google Scholar 中搜索龋齿、预防和激光等关键词来进行数据收集。评估了收集文献的激光协议及其有效性以及用于验证治疗结果的检查方法。在过去的 10 年中,发现了 118 篇相关文献。用于预防龋齿的研究波长主要位于近红外和中红外光谱范围内。在所评估的时间段内,在数据库中发现了 CO; Er:YAG; Er,Cr:YSGG; Er:YLF; Nd:YAG 的基频、二次和三次谐波;二极管;和氩离子激光器的研究。为此目的,CO 激光器是最受检查的系统,占文献的 39%。通过对这篇叙述性综述中的文献进行回顾,发现所有激光系统都在不同程度上呈现出积极的效果。激光照射可能是局部氟化物预防牙釉质龋齿的替代或协同作用,具有更长的持久效果。进一步的研究应集中在选择适当的激光设置以避免对牙釉质的损害,并开发有效的基于证据的临床方案。