首页> 美国卫生研究院文献>BioMed Research International >Application of a Low-Level Laser Therapy and the Purified Protein from Natural Latex (Hevea brasiliensis) in the Controlled Crush Injury of the Sciatic Nerve of Rats: A Morphological, Quantitative, and Ultrastructural Study
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Application of a Low-Level Laser Therapy and the Purified Protein from Natural Latex (Hevea brasiliensis) in the Controlled Crush Injury of the Sciatic Nerve of Rats: A Morphological, Quantitative, and Ultrastructural Study

机译:低水平激光疗法和天然乳胶(巴西橡胶)纯化蛋白在大鼠坐骨神经压痛性损伤中的应用:形态学,定量和超微结构研究

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摘要

This study analyzed the effects of a low-level laser therapy (LLLT, 15 J/cm2, 780 nm wavelength) and the natural latex protein (P1, 0.1%) in sciatic nerve after crush injury (15 Kgf, axonotmesis) in rats. Sixty rats (male, 250 g) were allocated into the 6 groups (n = 10): CG—control group; EG—nerve exposed; IG—injured nerve without treatment; LG—crushed nerve treated with LLLT; PG—injured nerve treated with P1; and LPG—injured nerve treated with LLLT and P1. After 4 or 8 weeks, the nerve samples were processed for morphological, histological quantification and ultrastructural analysis. After 4 weeks, the myelin density and morphological characteristics improved in groups LG, PG, and LPG compared to IG. After 8 weeks, PG, and LPG were similar to CG and the capillary density was higher in the LG, PG, and LPG. In the ultrastructural analysis the PG and LPG had characteristics that were similar to the CG. The application of LLLT and/or P1 improved the recovery from the nerve crush injury, and in the long term, the P1 protein was the better treatment used, since only the application of LLLT has not reached the same results, and these treatments applied together did not potentiate the recovery.
机译:本研究分析了低水平激光疗法(LLLT,15 J / cm 2 ,780 nm波长)和天然乳胶蛋白(P1,0.1%)对挤压伤后坐骨神经的影响( 15 Kgf,轴索不通)。 60只大鼠(雄性,250μg)被分为6组(n = 10):CG对照组; EG-神经暴露; IG-未经治疗的神经损伤; LG-LLLT治疗压伤神经; PG-用P1治疗的神经受损;和LPG-LLLT和P1治疗的神经受损。 4或8周后,对神经样品进行形态,组织学定量和超微结构分析。 4周后,与IG组相比,LG,PG和LPG组的髓磷脂密度和形态学特征得到改善。 8周后,PG和LPG与CG相似,LG,PG和LPG的毛细血管密度更高。在超微结构分析中,PG和LPG具有与CG相似的特征。 LLLT和/或P1的使用改善了神经挤压伤的恢复能力,从长远来看,P1蛋白是使用效果更好的治疗方法,因为仅LLLT的应用未达到相同的效果,并且这些方法一起使用没有增强复苏。

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