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首页> 外文期刊>Lasers in Medical Science >Effects of low-power laser irradiation (LPLI) at different wavelengths and doses on oxidative stress and fibrogenesis parameters in an animal model of wound healing
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Effects of low-power laser irradiation (LPLI) at different wavelengths and doses on oxidative stress and fibrogenesis parameters in an animal model of wound healing

机译:不同波长和剂量的低功率激光照射(LPLI)对伤口愈合动物模型中氧化应激和纤维生成参数的影响

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摘要

Gallium-arsenide (GaAs) and helium-neon (HeNe) lasers are the most commonly used low-energy lasers in physiotherapy for promoting wound healing and pain modulation. The aim of this study was investigate the effect of low-power laser irradiation (LPLI) at different wavelengths and doses on oxidative stress and fibrogenesis parameters in an animal model of wound healing. The animals were randomly divided into five groups (n = 6): Controls (skin injured animals without local or systemic treatment), skin injury treated with HeNe 1 J/cm2 (two seg); skin injury treated with HeNe 3 J/cm2 (six seg); skin injury treated with GaAs 1 J/cm2 (three seg); skin injury treated with GaAs 3 J/cm2 (nine seg). A single circular wound measuring 8 mm in diameter was surgically created on the back of the animal. The rats were irradiated at 2, 12, 24, 48, 72, 96, and 120 h after skin injury. The parameters, namely hydroxyproline content, activities of the antioxidant enzymes superoxide dismutase (SOD) and catalase (CAT), and lipid (TBARS) and protein oxidation (carbonyl groups) measurements were assessed. In addition, wound size regression was also analyzed. The results showed an improvement in the wound healing reflected by the reduction in wound size and increased collagen synthesis. Moreover, a significant reduction in TBARS levels, carbonyl content, and SOD and CAT activities were observed after laser irradiation, particularly with the treatments HeNe laser 1 and 3 J/cm2 dose and GaAs 3 J/cm2 dose. The data strongly indicate that LPLI therapy is efficient in accelerating the skin wound healing process after wounding, probably by reducing the inflammatory phase and inducing collagen synthesis.
机译:砷化镓(GaAs)和氦氖(HeNe)激光是物理疗法中最常用的低能量激光,可促进伤口愈合和疼痛调节。这项研究的目的是研究在伤口愈合的动物模型中,不同波长和剂量的低功率激光照射(LPLI)对氧化应激和纤维生成参数的影响。将动物随机分为五组(n = 6):对照组(未经局部或全身治疗的皮肤受伤的动物),用HeNe 1 J / cm 2 治疗的皮肤损伤(两段); HeNe 3 J / cm 2 (6段)治疗皮肤损伤; GaAs 1 J / cm 2 (3段)治疗皮肤损伤; GaAs 3 J / cm 2 (九段)治疗皮肤损伤。通过手术在动物的背部产生直径为8mm的单个圆形伤口。皮肤损伤后第2、12、24、48、72、96和120 h照射大鼠。评估了参数,即羟脯氨酸含量,抗氧化酶超氧化物歧化酶(SOD)和过氧化氢酶(CAT)的活性,以及​​脂质(TBARS)和蛋白质氧化(羰基)的测量值。另外,还分析了伤口大小的回归。结果显示伤口愈合的改善反映在伤口大小的减少和胶原蛋白合成的增加上。此外,激光照射后,TBARS水平,羰基含量以及SOD和CAT活性均显着降低,尤其是HeNe激光1和3 J / cm 2 剂量和GaAs 3 J / cm的处理 2 剂量。数据强烈表明,LPLI治疗可能有效地加速了伤口愈合后皮肤伤口的愈合过程,可能是通过减少炎症阶段和诱导胶原蛋白合成。

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