Trajano Eduardo Tavares Lima, Mencalha Andre Luiz, Monte-Alto-Costa Andréa, Pôrto Luís Cristóvão, de Souza da Fonseca Adenilson
Laboratório de Reparo Tecidual Departamento de Histologia e Embriologia, Instituto de Biologia Roberto Alcantara Gomes, Universidade do Estado do Rio de Janeiro, Avenida Marechal Rondon 381-Pav. Jose Roberto Feresin Moraes, Rio de Janeiro, 20950-003, Brazil.
Lasers Med Sci. 2014 Nov;29(6):1953-7. doi: 10.1007/s10103-014-1612-6. Epub 2014 Jun 15.
Although red laser lights lie in the region of non-ionizing radiations in the electromagnetic spectrum, there are doubts whether absorption of these radiations causes lesions in the DNA molecule. Our aim was to investigate the expression of the genes involved with base excision and nucleotide excision repair pathways in skin tissue submitted to burn injury and exposed to low-level red laser. Wistar rats were divided as follows: control group-rats burned and not irradiated, laser group-rats burned and irradiated 1 day after injury for five consecutive days, and later laser group-rats injured and treated 4 days after injury for five consecutive days. Irradiation was performed according to a clinical protocol (20 J/cm(2), 100 mW, continuous wave emission mode). The animals were sacrificed on day 10, and scarred tissue samples were withdrawn for total RNA extraction, complementary DNA (cDNA) synthesis, and evaluation of gene expression by quantitative polymerase chain reaction. Low-level red laser exposure (1) reduces the expression of APE1 messenger (mRNA), (2) increases the expression of OGG1 mRNA, (3) reduces the expression of XPC mRNA, and (4) increases the expression of XPA mRNA both in laser and later laser groups. Red laser exposure at therapeutic fluences alters the expression of genes related to base excision and nucleotide excision pathways of DNA repair during wound healing of burned skin.
尽管红色激光位于电磁光谱中的非电离辐射区域,但对于这些辐射的吸收是否会导致DNA分子损伤仍存在疑问。我们的目的是研究在遭受烧伤并暴露于低强度红色激光的皮肤组织中,参与碱基切除和核苷酸切除修复途径的基因的表达情况。将Wistar大鼠分为以下几组:对照组——烧伤但未接受照射的大鼠;激光组——在受伤后1天接受照射并连续照射5天的烧伤大鼠;后期激光组——在受伤后4天接受治疗并连续治疗5天的受伤大鼠。照射按照临床方案进行(20 J/cm²,100 mW,连续波发射模式)。在第10天处死动物,取出瘢痕组织样本进行总RNA提取、互补DNA(cDNA)合成,并通过定量聚合酶链反应评估基因表达。低强度红色激光照射(1)降低了APE1信使核糖核酸(mRNA)的表达,(2)增加了OGG1 mRNA的表达,(3)降低了XPC mRNA的表达,(4)在激光组和后期激光组中均增加了XPA mRNA的表达。在烧伤皮肤伤口愈合过程中,治疗剂量的红色激光照射会改变与DNA修复的碱基切除和核苷酸切除途径相关的基因表达。