Student Scientific Society at the Department of Interdisciplinary Dentistry, Pomeranian Medical University in Szczecin, Szczecin, Poland.
Department of Oral and Maxillofacial Sciences, Sapienza University of Rome, Rome, Italy.
Photobiomodul Photomed Laser Surg. 2020 Aug;38(8):455-465. doi: 10.1089/photob.2019.4779. Epub 2020 Jul 15.
The duration of orthodontic treatment is one of the most important aspects considered by patients. Photobiomodulation (PBM) depends upon the exposure of the tissue to particular, therapeutic wavelengths of light in the "therapeutic window" (from 600 to 1200 nm). PBM increases cell metabolism, which leads to higher ATP production. Increasing the amount of ATP in well-vascularized bone cells promotes cell proliferation and differentiation, creating a favorable environment for tooth movement. The aim of the study is to discuss and compare the use of PBM in accelerating the orthodontic movement and reducing the time of treatment. A systematic review was conducted. Literature searches were performed using Medline (PubMed), Web of Science, and Scopus (from September 13 to September 20, 2019). The quality assessment was performed using the Jadad scale for reporting randomized controlled trials for randomized clinical trial and randomized control clinical trial studies, and the Newcastle/Ottawa Quality Assessment Form for case/control studies. Thirty-three articles from PubMed, 46 from Scopus, 5 from Web of Science were selected. After removal of duplicates, 82 articles were analyzed. Subsequently, 74 articles were excluded because they did not meet the inclusion criteria. The remaining eight articles were included in the qualitative synthesis. PBM is an efficient, effective, and noninvasive method to accelerate orthodontic tooth movement. PBM should be introduced into the daily practice of treating various malocclusions as an additional procedure. Intraoral application gives better results and its introduction to treatment seems more reasonable.
正畸治疗的持续时间是患者最关注的方面之一。光生物调节(PBM)取决于组织在“治疗窗口”(600 至 1200nm)内暴露于特定的治疗波长的光。PBM 增加细胞代谢,导致更高的三磷酸腺苷(ATP)产生。增加富含血管的骨细胞中的 ATP 量可促进细胞增殖和分化,为牙齿移动创造有利环境。本研究旨在讨论和比较光生物调节在加速正畸运动和缩短治疗时间方面的应用。进行了系统评价。使用 Medline(PubMed)、Web of Science 和 Scopus 进行文献检索(2019 年 9 月 13 日至 9 月 20 日)。使用 Jadad 量表对随机对照试验报告进行质量评估,对随机临床试验和随机对照临床试验研究进行质量评估,对病例对照研究使用纽卡斯尔/渥太华质量评估表进行质量评估。从 PubMed 中选择了 33 篇文章,从 Scopus 中选择了 46 篇文章,从 Web of Science 中选择了 5 篇文章。去除重复项后,分析了 82 篇文章。随后,有 74 篇文章因不符合纳入标准而被排除。其余 8 篇文章被纳入定性综合分析。PBM 是一种有效、有效且非侵入性的方法,可加速正畸牙齿移动。PBM 应作为一种附加程序引入治疗各种错合畸形的日常实践中。口腔内应用可获得更好的结果,将其引入治疗似乎更为合理。