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Gold nanoparticles alter parameters of oxidative stress and energy metabolism in organs of adult rats

机译:金纳米颗粒改变成年大鼠器官氧化应激和能量代谢的参数

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This study evaluated the parameters of oxidative stress and energy metabolism after the acute and long-term administration of gold nanoparticles (GNPs, 10 and 30 nm in diameter) in different organs of rats. Adult male Wistar rats received a single intraperitoneal injection or repeated injections (once daily for 28 days) of saline solution, GNPs-10 or GNPs-30. Twenty-four hours after the last administration, the animals were killed, and the liver, kidney, and heart were isolated for biochemical analysis. We demonstrated that acute administration of GNPs-30 increased the TBARS levels, and that GNPs-10 increased the carbonyl protein levels. The long-term administration of GNPs-10 increased the TBARS levels, and the carbonyl protein levels were increased by GNPs-30. Acute administration of GNPs-10 and GNPs-30 increased SOD activity. Long-term administration of GNPs-30 increased SOD activity. Acute administration of GNPs-10 decreased the activity of CAT, whereas long-term administration of GNP-10 and GNP-30 altered CAT activity randomly. Our results also demonstrated that acute GNPs-30 administration decreased energy metabolism, especially in the liver and heart. Long-term GNPs-10 administration increased energy metabolism in the liver and decreased energy metabolism in the kidney and heart, whereas long-term GNPs-30 administration increased energy metabolism in the heart. The results of our study are consistent with other studies conducted in our research group and reinforce the fact that GNPs can lead to oxidative damage, which is responsible for DNA damage and alterations in energy metabolism.
机译:这项研究评估了急性和长期施用金纳米颗粒(直径分别为10和30 nm)在大鼠不同器官中的氧化应激和能量代谢的参数。成年雄性Wistar大鼠接受单次腹膜内注射或重复注射(每天一次,共28天)盐溶液,GNPs-10或GNPs-30。最后一次给药后二十四小时,将动物处死,并分离肝脏,肾脏和心脏进行生化分析。我们证明了GNPs-30的急性给药会增加TBARS的水​​平,而GNPs-10会增加羰基蛋白的水平。长期施用GNPs-10会增加TBARS水平,而GNPs-30会增加羰基蛋白水平。急性给予GNPs-10和GNPs-30可增加SOD活性。长期施用GNPs-30可增加SOD活性。急性给予GNPs-10会降低CAT的活性,而长期给予GNP-10和GNP-30会随机改变CAT的活性。我们的研究结果还表明,急性GNPs-30给药会降低能量代谢,尤其是在肝脏和心脏中。长期服用GNPs-10可以增加肝脏的能量代谢,减少肾脏和心脏的能量代谢,而长期服用GNPs-30则可以增加心脏的能量代谢。我们的研究结果与我们研究小组中进行的其他研究一致,并强调了GNP可能导致氧化损伤的事实,氧化损伤是DNA损伤和能量代谢改变的原因。

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