Amid Reza, Kadkhodazadeh Mahdi, Ahsaie Mitra Ghazizadeh, Hakakzadeh Arian
Department of Periodontics, School of Dentistry, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Gifted and Talented Dental Students Division, Students' Research Committee, School of Dentistry, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
J Lasers Med Sci. 2014 Fall;5(4):163-70.
Low level laser therapy (LLLT) also known as photobiomodulation, is a treatment that uses low-level lasers or light-emitting diodes (LEDs) to change cellular function and is a clinically well accepted tool in regenerative medicine and dentistry. Considering the variety of laser, exposure, cells and study types, the exact effects of low level laser therapy seems to be unclear. The aim of this study was to review the data published in the field of the effects of low level laser therapy on proliferation and differentiation of the cells contributing in bone regeneration.
To access relevant articles, an electronic search in PubMed was conducted from 2001 to April 2014. English language published papers on low level laser therapy were found using the selected keywords .The full texts of potentially suitable articles were obtained for final assessment according to the exclusion and inclusion criteria.
240 articles were found from 2001 to April 2014. Following the initial screening of titles and abstracts as well as the final screening of full texts, 22 articles completely fulfilled the inclusion criteria of this study. Wavelength used in LLLT irradiation varied between 600 to 1000 nm with an energy density of 0.04-60J/cm(2) . Although almost all studies agreed on getting positive effects from LLLT, some had opposing results.
Low level laser with low-energy density range appears to exert a biostimulatory effect on bone tissue, enhance osteoblastic proliferation and differentiation on cell lines used in in vitro studies. Despite the fact that many researches have been recently done on the effects of LLLT on different cell lines, without knowing the precise mechanism and effects, we are not able to offer a clinical treatment protocol. This paper is a beginning to help further progress and extend practical use of LLLT in future.
低强度激光疗法(LLLT)也被称为光生物调节疗法,是一种利用低强度激光或发光二极管(LED)来改变细胞功能的治疗方法,是再生医学和牙科临床上广泛接受的工具。鉴于激光种类、照射方式、细胞类型和研究类型的多样性,低强度激光疗法的确切效果似乎尚不清楚。本研究的目的是回顾低强度激光疗法对参与骨再生的细胞增殖和分化影响领域发表的数据。
为获取相关文章,于2001年至2014年4月在PubMed上进行了电子检索。使用选定的关键词查找关于低强度激光疗法的英文发表论文。根据排除和纳入标准获取潜在合适文章的全文进行最终评估。
2001年至2014年4月共找到240篇文章。经过对标题和摘要的初步筛选以及对全文的最终筛选,22篇文章完全符合本研究的纳入标准。低强度激光疗法照射使用的波长在600至1000nm之间,能量密度为0.04 - 60J/cm²。尽管几乎所有研究都认同低强度激光疗法能产生积极效果,但也有一些相反的结果。
低能量密度范围的低强度激光似乎对骨组织产生生物刺激作用,在体外研究中使用的细胞系上增强成骨细胞的增殖和分化。尽管最近对低强度激光疗法对不同细胞系的影响进行了许多研究,但由于不知道确切机制和效果,我们无法提供临床治疗方案。本文是帮助低强度激光疗法在未来进一步发展和扩大实际应用的开端。