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首页> 外文期刊>Acta neurobiologiae experimentalis >Nicorandil attenuates neuronal mitochondrial dysfunction and oxidative stress associated with murine model of vascular calcification
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Nicorandil attenuates neuronal mitochondrial dysfunction and oxidative stress associated with murine model of vascular calcification

机译:Nicorandil衰减与血管钙化的鼠模型相关的神经元线粒体功能障碍和氧化应激

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摘要

Evidences suggest that the presence of chronic kidney disease (CKD) is associated with cerebrovascular diseases related cognitive decline in dialysis patients. As mitochondrial dysfunction is implicated in neurodegenerative disorders, we hypothesized that changes in brain mitochondria occur due to vascular calcification induced by renal failure and the opening of the mitochondrial potassium channel using nicorandil may prevent its dysfunction. Brain tissues from rats with vascular calcification were studied. Nicorandil (7.5 mg/kg b.wt.) was given either concomitantly or after the induction of calcification. The brain tissues were evaluated for antioxidant capacity, mitochondrial enzymes and oxidative phosphorylation efficiency along with the progression of calcification. The results suggested that renal failure, elevated the calcium, phosphorus product in the brain. The brain cytoplasm and mitochondrial fractions showed an elevated TBARS and a corresponding decline in the antioxidant enzymes, indicating a severe oxidative stress. The elevated brain mitochondrial enzymes like NADH dehydrogenase, and succinate dehydrogenase in the disease control groups, reversed to the near control level after nicorandil treatment. We observed that nicorandil was more effective when given after calcification. It reduced the biochemical alterations associated with calcium and phosphorous toxicity in the brain, by preserving mitochondria, the key target for treating neurodegenerative diseases.
机译:证据表明,慢性肾病(CKD)的存在与脑血管疾病相关的透析患者相关认知下降有关。由于线粒体功能障碍涉及神经变性障碍,我们假设由于肾功能衰竭诱导的血管钙化和使用Nicorandil的线粒体钾通道的开口可能导致脑线粒体的变化可能会阻止其功能障碍。研究了来自血管钙化大鼠的脑组织。 Nicorandil(7.5 mg / kg B.wt.)伴随着或诱导钙化后给出。随着钙化的进展,评估抗氧化能力,线粒体酶和氧化磷酸化效率的脑组织。结果表明肾功能衰竭,升高了钙,脑中的磷产品。脑细胞质和线粒体级分显示出升高的TBAR和抗氧化酶的相应下降,表明严重的氧化应激。在疾病对照组中,如NADH脱氢酶等脑线粒体酶及琥珀酸乙酯脱氢酶,逆转到Nicorandil治疗后的接近控制水平。我们观察到,当钙化后给出时,Nicorandil更有效。它通过保护线粒体,治疗神经变性疾病的关键靶标降低了大脑中钙和磷毒性相关的生物化学改变。

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