镍暴露对心脏组织的毒性机制

E. Novelli, Y. S. Diniz, T. Machado, V. Proença, T. Tibiriçá, L. Faine, B. Ribas, J. A. Almeida
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引用次数: 13

摘要

心血管疾病的发病率在一般人群中有所增加,心脏损伤被认为是死亡的一个重要原因。此外,近年来污染和金属接触有所增加。因此,金属的毒性作用,如镍,以及与心脏损伤的关系,应该尽快确定。虽然自由基介导的细胞损伤和活性氧已经被认为是镍毒性机制的一部分,但最近的研究已经确定自由基可能是心功能障碍的重要因素。然而,关于镍暴露对心脏组织氧化应激标志物的影响的信息很少。镍暴露(Ni2+来自NiSO4的100 mg L-1)显著增加心脏组织的过氧化物和总脂质浓度。我们还观察到研究动物血清胆固醇(59%)、乳酸脱氢酶(LDH-64%)和丙氨酸转氨酶(ALT-30%)水平升高。当生育酚摄入量为0.2 mg 200 g-1时,各生化指标恢复到对照水平。单独服用维生素E可显著降低心脏脂肪过氧化物浓度,增加心脏超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶(GSH-Px)活性。由于镍暴露对过氧化氢酶和GSH-Px活性没有影响,而SOD活性降低,我们认为镍暴露产生的超氧自由基(O2 -)在心脏损伤的发病机制中起主要作用。生育酚通过其抗氧化活性降低了镍暴露对大鼠心脏的毒性作用。
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TOXIC MECHANISM OF NICKEL EXPOSURE ON CARDIAC TISSUE
The incidence of cardiovascular disease has increased in the general population, and cardiac damage is indicated as one important cause of mortality. In addition, pollution and metal exposure have increased in recent years. For this reason, toxic effects of metals, such as nickel, and the irrelation to cardiac damage should be urgently established. Although free radical-mediated cellular damage and reactive oxygen species have been theorized as contributing to the nickel mechanism of toxicity, recent investigations have established that free radicals may be important contributors to cardiac dysfunction. However,there is little information on the effect of nickel exposure on markers of oxidative stress in cardiac tissue. Nickel exposure (Ni2+ 100 mg L-1 from NiSO4) significantly increased lipoperoxide and total lipid concentrations in cardiac tissue. We also observed increased serum levels of cholesterol(59%), lactate dehydrogenase (LDH-64%), and alanine transaminase (ALT-30%) in study animals. The biochemical parameters recovered to the control values with tocopherol intake (0.2 mg 200 g-1). Vitamin E alone significantly decreased the lipoperoxide concentration and increased superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) activities in the heart. Since no alterations were observed in catalase and GSH-Px activities by nickel exposure while SOD activities were decreased, we conclude that superoxide radical (O2 -) generated by nickel exposure is of primary importance in the pathogenesis of cardiac damage. Tocopherol, by its antioxidant activity, decreased the toxic effects of nickel exposure on heart of rats.
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