镉对心脏组织的毒性机制

E. Novelli, S. Marques, J. A. Almeida, Y. S. Diniz, L. Faine, B. Ribas
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引用次数: 16

摘要

工作场所环境中存在有毒物质,需要系统地评估接触和接触对象的健康状况。镉是一种在水中发现的剧毒元素。虽然游离介导的细胞损伤和活性氧(ROS)已经被认为是镉毒性机制的一部分,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,但关于镉暴露对心脏组织氧化应激标志物的影响的信息很少。饮用水中镉暴露(cd2 + - 100 mg/l -来自cdcl2) 15天,显著增加了脂过氧化物,降低了超氧化物歧化酶和谷胱甘肽过氧化物酶的活性。镉暴露后大鼠心脏过氧化氢酶活性未见明显变化。我们还观察到镉暴露大鼠心脏组织中糖原和葡萄糖浓度降低,总脂质含量增加。丙氨酸转氨酶和天冬氨酸转氨酶活性的降低反映了代谢蛋白降解的降低,乳酸脱氢酶活性的升高与糖酵解能力的增加有关。由于镉暴露改变了代谢途径,我们可以得出结论,Cd 2+暴露诱导了ROS,并引发了发生在心脏的一系列事件,导致代谢途径的改变。
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TOXIC MECHANISM OF CADMIUM EXPOSURE ON CARDIAC TISSUE
The presence of toxic substances in the workplace environment requires systematic evaluation of exposure and health status in exposed subjects. Cadmium is a highly toxic element found in water. Although free mediated cellular damage and reactive oxygen species (ROS), had been theorized as contributing to the cadmium mechanism of toxicity, and recent investigations have established that free radicals may be important contributors to cardiac dysfunction, there is little information on the effect of cadmium exposure on markers of oxidative stress in cardiac tissue. Cadmium exposure (Cd 2+ - 100 mg/l - from CdCl 2 ) in drinking water, during 15 days, significantly increased lipoperoxide and decreased the activities of superoxide dismutase and glutathione peroxidase. No alterations were observed in catalase activity in heart of rats with cadmium exposure. We also observed decreased glycogen and glucose concentration and increased total lipid content in cardiac tissue of rats with cadmium exposure. The decreased activities of alanine transaminase and aspartate transaminase reflected decreased metabolic protein degradation, and increased lactate dehydrogenase activity was related with increases in capacity of glycolysis. Since the metabolic pathways were altered by cadmium exposure, we can conclude that Cd 2+ exposure induced ROS and initiate some series of events that occur in the heart and resulted in metabolic pathways alterations.
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