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首页> 外文期刊>Cellular and Molecular Neurobiology >Mitochondrial dysfunction in aging rat brain regions upon chlorpyrifos toxicity and cold stress: An interactive study
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Mitochondrial dysfunction in aging rat brain regions upon chlorpyrifos toxicity and cold stress: An interactive study

机译:毒死rif毒性和冷应激导致衰老大鼠脑区域的线粒体功能障碍:一项互动研究

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摘要

Mitochondrial dysfunction and consequent energy depletion are the major causes of oxidative stress resulting to bring alterations in the ionic homeostasis causing loss of cellular integrity. Our previous studies have shown the age-associated interactive effects in rat central nervous system (CNS) upon co-exposure to chlorpyrifos (CPF) and cold stress leading to macromolecular oxidative damage. The present study elucidates a possible mechanism by which CPF and cold stress interaction cause(s) mitochondrial dysfunction in an age-related manner. In this study, the activity levels of Krebs cycle enzymes and electron transport chain (ETC) protein complexes were assessed in the isolated fraction of mitochondria. CPF and cold stress (15 and 20°C) exposure either individually or in combination decreased the activity level of Krebs cycle enzymes and ETC protein complexes in discrete regions of rat CNS. The findings confirm that cold stress produces significant synergistic effect in CPF intoxicated aging rats. The synergism between CPF and cold stress at 15°C caused a higher depletion of respiratory enzymes in comparison with CPF and cold stress alone and together at 20°C indicating the extent of deleterious functional alterations in discrete regions of brain and spinal cord (SC) which may result in neurodegeneration and loss in neuronal metabolic control. Hence, co-exposure of CPF and cold stress is more dangerous than exposure of either alone. Among the discrete regions studied, the cerebellum and medulla oblongata appears to be the most susceptible regions when compared to cortex and SC. Furthermore, the study reveals a gradual decrease in sensitivity to CPF toxicity as the rat matures.
机译:线粒体功能障碍和随之而来的能量消耗是氧化应激的主要原因,其导致离子稳态的改变,从而引起细胞完整性的丧失。我们以前的研究表明,与毒死rif(CPF)共同暴露和冷应激导致大分子氧化损伤时,大鼠中枢神经系统(CNS)与年龄相关的相互作用。本研究阐明了CPF和冷应激相互作用以与年龄相关的方式引起线粒体功能障碍的可能机制。在这项研究中,在分离的线粒体部分评估了克雷布斯循环酶和电子传输链(ETC)蛋白复合物的活性水平。 CPF和冷应激(15和20°C)的暴露,无论是单独还是结合在一起,都会降低大鼠中枢神经系统离散区域中Krebs循环酶和ETC蛋白复合物的活性水平。这些发现证实,冷应激在CPF中毒衰老大鼠中产生明显的协同作用。与单独使用CPF和冷应激以及一起在20°C时相比,CPF和15°C的冷应激之间的协同作用导致呼吸酶的消耗更高,这表明大脑和脊髓(SC)离散区域中有害功能改变的程度这可能会导致神经变性和神经元代谢控制的丧失。因此,CPF和冷应激的共同暴露比单独暴露更危险。在研究的离散区域中,与皮质和SC相比,小脑和延髓似乎是最易感的区域。此外,该研究表明,随着大鼠的成熟,其对CPF毒性的敏感性逐渐降低。

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