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Neuroprotective Role of Vitamin B3 in Experimentally Induced Oxidative Stress

机译:维生素B3在实验性氧化应激中的神经保护作用

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Paraquat is a widely used herbicide. The main mechanism underlying PQ toxicity is oxidative stress. Niacin (nicotinic acid) a precursor for NAD+ It has also been reported to possess oxygen radical scavenging activity. The enzyme PARP-1 is activated by DNA strand breaks, using NAD+ as a substrate. Thus, the present study aimed to assess the magnitude of oxidative DNA damage and the role of PARP and the advantages of modulating its activity by niacin supplementation in experimentally induced oxidative stress by PQ. 50 male albino rats were equally divided into five groups; the first and second groups were the control and PQ treated groups respectively while the 3rd group was nicotinic acid treated group; the 4th and 5th groups were co- and post treated PQ treated rats with nicotinic acid respectively. Serum 8-hydroxy-2'-deoxyguanosine and brain MDA levels in PQ treated group showed a significant increase when compared with control group, while levels of PARP activity and TAC in PQ treated group showed a significant decrease when compared with control group. A significant increase of PARP activity & TAC and a significant decrease in serum 8-hydroxy-2'-deoxyguanosine&MDA after nicotinic acid injection when compared with control group was observed. Post-treatment with nicotinic acid improved the biochemical and histopathological alterations in brain treated with nicotinic acid, while co-treatment with nicotinic acid protected against ROS production.
机译:百草枯是一种广泛使用的除草剂。 PQ毒性的主要机制是氧化应激。烟酸(烟酸)是NAD +的前体。据报道,它具有清除氧自由基的活性。使用NAD +作为底物,可通过DNA链断裂激活PARP-1酶。因此,本研究旨在评估氧化性DNA损伤的程度和PARP的作用,以及通过烟酸补充来调节其活性在PQ实验诱导的氧化应激中的优势。将50只雄性白化病大鼠平均分为五组;第一组和第二组分别为对照组和PQ治疗组,第三组为烟酸治疗组。第4组和第5组分别是用烟酸与PQ联合处理和后处理的大鼠。与对照组相比,PQ治疗组的血清8-羟基-2'-脱氧鸟苷和脑中的MDA水平显着升高,而PQ治疗组的PARP活性和TAC水平显着下降。与对照组相比,烟酸注射后PARP活性和TAC显着增加,血清8-羟基-2'-脱氧鸟苷和MDA显着降低。烟酸的后处理可改善烟酸治疗的大脑的生化和组织病理学改变,而烟酸的共处理可防止产生ROS。

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