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金纳米颗粒离子电渗疗法可改善烧伤创面的线粒体活性和氧化应激指标。

Iontophoresis with gold nanoparticles improves mitochondrial activity and oxidative stress markers of burn wounds.

作者信息

Silveira Paulo C L, Venâncio Mirelli, Souza Priscila S, Victor Eduardo G, de Souza Notoya Frederico, Paganini Carla S, Streck Emilio L, da Silva Luciano, Pinho Ricardo A, Paula Marcos M S

机构信息

Laboratory of Physiology and Biochemistry of Exercise, PPGCS, Universidade do Extremo Sul Catarinense, 88806-000 Criciúma, SC, Brazil.

Laboratory of Synthesis of Multifunctional Complexes, PPGCS, Universidade do Extremo Sul Catarinense, 88806-000 Criciúma, SC, Brazil.

出版信息

Mater Sci Eng C Mater Biol Appl. 2014 Nov;44:380-5. doi: 10.1016/j.msec.2014.08.045. Epub 2014 Aug 27.

Abstract

The aim of this study was to analyse the effects of microcurrent and gold nanoparticles on oxidative stress parameters and the mitochondrial respiratory chain in the healing of skin wounds. Thirty 60-day old male Wistar rats (250-300 g) were divided into five groups (N=6): Control; Burn wounds; Microcurrent (MIC); Gold nanoparticle gel (GNP gel) and Microcurrent+Gold nanoparticle gel (MIC+GNP gel). The microcurrent treatment was applied for five consecutive days at a dose of 300 μA. The results demonstrate a significant decrease in the activity of complexes I, II-III and IV in the Burn Wounds group compared to the control, and the MIC+GNP gel group was able to reverse this inhibition in complexes I, III and IV. Furthermore, a significant reduction in oxidative damage parameters and a significant increase in the levels of antioxidant defence enzymes were induced in the MIC+GNP gel group compared to the Burn Wounds group. The data strongly indicate that the group receiving treatment with MIC+GNP gel had improved mitochondrial functioning and oxidative stress parameters, which contributed to tissue repair.

摘要

本研究旨在分析微电流和金纳米颗粒对皮肤伤口愈合过程中氧化应激参数及线粒体呼吸链的影响。将30只60日龄雄性Wistar大鼠(体重250 - 300克)分为五组(每组n = 6):对照组;烧伤伤口组;微电流组(MIC);金纳米颗粒凝胶组(GNP凝胶)和微电流 + 金纳米颗粒凝胶组(MIC + GNP凝胶)。以300 μA的剂量连续五天施加微电流治疗。结果表明,与对照组相比,烧伤伤口组中复合物I、II - III和IV的活性显著降低,而MIC + GNP凝胶组能够逆转复合物I、III和IV中的这种抑制作用。此外,与烧伤伤口组相比,MIC + GNP凝胶组的氧化损伤参数显著降低,抗氧化防御酶水平显著升高。数据有力地表明,接受MIC + GNP凝胶治疗的组线粒体功能和氧化应激参数得到改善,这有助于组织修复。

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