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首页> 外文期刊>Photochemistry and Photobiology: An International Journal >High Final Energy of Low-Level Gallium Arsenide Laser Therapy Enhances Skeletal Muscle Recovery without a Positive Effect on Collagen Remodeling
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High Final Energy of Low-Level Gallium Arsenide Laser Therapy Enhances Skeletal Muscle Recovery without a Positive Effect on Collagen Remodeling

机译:低水平砷化镓激光疗法的高最终能量可增强骨骼肌的恢复,而不会对胶原蛋白的重构产生积极影响

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The aim of this study was to evaluate the effects of a Gallium Arsenide (GaAs) laser, using a high final energy of 4.8J, during muscle regeneration after cryoinjury. Thirty Wistar rats were divided into three groups: Control (C, n=10); Injured (I, n=10) and Injured and laser treated (Injured/LLLT, n=10). The cryoinjury was induced in the central region of the tibialis anterior muscle (TA). The applications of the laser (904nm, 50mW average power) were initiated 24h after injury, at energy density of 69Jcm(-1) for 48s, for 5days, to two points of the lesion. Twenty-four hours after the final application, the TA muscle was removed and frozen in liquid nitrogen to assess the general muscle morphology and the gene expression of TNF-, TGF-, MyoD, and Myogenin. The Injured/LLLT group presented a higher number of regenerating fibers and fewer degenerating fibers (P<0.05) without changes in the collagen remodeling. In addition, the Injured/LLLT group presented a significant decrease in the expression of TNF- and myogenin compared to the injured group (P<0.05). The results suggest that the GaAs laser, using a high final energy after cryoinjury, promotes muscle recovery without changing the collagen remodeling in the muscle extracellular matrix.
机译:这项研究的目的是评估冷冻损伤后肌肉再生过程中使用高最终能量4.8J的砷化镓(GaAs)激光的效果。将三十只Wistar大鼠分成三组:对照组(C,n = 10);对照组(C,n = 10)。受伤(I,n = 10),受伤并进行激光治疗(受伤/ LLLT,n = 10)。在胫骨前肌(TA)的中央区域诱发了冻伤。激光在损伤后24小时开始应用(904nm,平均功率50mW),能量密度为69Jcm(-1)持续48 s,持续5天,到达病变的两个部位。最终施用后二十四小时,将TA肌肉取出并冷冻在液氮中,以评估总体肌肉形态以及TNF-,TGF-,MyoD和Myogenin的基因表达。 Injured / LLLT组的再生纤维数量更多,而退化纤维更少(P <0.05),而胶原蛋白的重塑没有改变。此外,与受伤组相比,受伤/ LLLT组的TNF-和肌生成素表达显着降低(P <0.05)。结果表明,GaAs激光在冷冻伤后使用较高的最终能量,可促进肌肉恢复,而不会改变肌肉细胞外基质中的胶原重塑。

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