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啮齿动物坐骨神经挤压伤中的光生物调节:文献系统综述及临床治疗前景

Photobiomodulation in Sciatic Nerve Crush Injuries in Rodents: A Systematic Review of the Literature and Perspectives for Clinical Treatment.

作者信息

Sasso Letícia Lemes, de Souza Luana Gabriel, Girasol Carlos Eduardo, Marcolino Alexandre Márcio, de Jesus Guirro Rinaldo Roberto, Barbosa Rafael Inácio

机构信息

Department of Health Sciences, Federal University of Santa Catarina/UFSC - Araranguá, Brazil.

Postgraduate Program in Rehabilitation Sciences, Federal University of Santa Catarina / UFSC - Araranguá, Brazil.

出版信息

J Lasers Med Sci. 2020 Summer;11(3):332-344. doi: 10.34172/jlms.2020.54. Epub 2020 Jun 21.

Abstract

The aim of the study was to perform a literature review to analyze the effect of photobiomodulation in experimental studies on peripheral nerve regeneration after sciatic nerve crush injury in rodents. A bibliographic search was performed in the electronic databases, including MEDLINE (PubMed), SCOPUS, and SciELO, from 2008 to 2018. A total of 1912 articles were identified in the search, and only 19 fulfilled all the inclusion criteria. Along with the parameters most found in the manuscripts, the most used wavelengths were 660 nm and 830 nm, power of 30 and 40 mW, and energy density of 4 and 10 J/cm . For total energy throughout the intervention period, the lowest energy found with positive effects was 0.70 J, and the highest 1.141 J. Seventeen studies reported positive effects on nerve regeneration. The variables selected to analyze the effect were: Sciatic Functional Index (SFI), Static Sciatic Index (SSI), morphometric, morphological, histological, zymographic, electrophysiological, resistance mechanics and range of motion (ROM). The variety of parameters used in the studies demonstrated that there is yet no pre-determined protocol for treating peripheral nerve regeneration. Only two studies by different authors used the same power, energy density, beam area, and power density. It was concluded that the therapeutic window of the photobiomodulation presents a high variability of parameters with the wavelength (632.8 to 940 nm), power (5 to 170 mW) and energy density (3 to 280 J /cm ), promoting nerve regeneration through the expression of cytokines and growth factors that aid in modulating the inflammatory process, improving morphological aspects, restoring the functionality to the animals in a brief period.

摘要

本研究的目的是进行一项文献综述,以分析光生物调节在啮齿动物坐骨神经挤压伤后周围神经再生实验研究中的作用。在2008年至2018年期间,对包括MEDLINE(PubMed)、SCOPUS和SciELO在内的电子数据库进行了文献检索。检索共识别出1912篇文章,只有19篇符合所有纳入标准。除了手稿中最常出现的参数外,最常用的波长为660 nm和830 nm,功率为30和40 mW,能量密度为4和10 J/cm²。在整个干预期间的总能量方面,发现具有积极效果的最低能量为0.70 J,最高为1.141 J。十七项研究报告了对神经再生的积极影响。选择用于分析效果的变量包括:坐骨神经功能指数(SFI)、静态坐骨指数(SSI)、形态测量、形态学、组织学、酶谱分析、电生理、阻力力学和运动范围(ROM)。研究中使用的参数多种多样,表明目前尚无用于治疗周围神经再生的预定方案。只有两位不同作者的研究使用了相同的功率、能量密度、光束面积和功率密度。得出的结论是,光生物调节的治疗窗口在波长(632.8至940 nm)、功率(5至170 mW)和能量密度(3至280 J/cm²)方面呈现出高度可变的参数,通过细胞因子和生长因子的表达促进神经再生,这些因子有助于调节炎症过程,改善形态学方面,在短时间内恢复动物的功能。

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