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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Seizure-induced changes in energy metabolites and effects of N-tert-butyl-alpha-phenylnitrone (PNB) and vitamin E in rats.
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Seizure-induced changes in energy metabolites and effects of N-tert-butyl-alpha-phenylnitrone (PNB) and vitamin E in rats.

机译:癫痫发作诱发大鼠能量代谢产物的变化以及N-叔丁基-α-苯基硝基(PNB)和维生素E的影响。

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摘要

Impaired energy metabolism may play a critical role in the neuronal injury caused by kainic acid (KA) induced status epilepticus (SE). Following an acute dose of KA (15 mg/kg, s.c.) rats developed SE within 1 h. Rats were sacrificed 1 or 72 h after the onset of SE using a head focused microwave technique and the brain regions (pyriform cortex, amygdala, and hippocampus) were assayed for energy metabolites: ATP, ADP, AMP, phosphocreatine (PCr) and creatine (Cr) using reversed-phase HPLC (RP-HPLC). Control values were significantly higher in cortex (23-32%) than in other brain regions. Within 1 h, SE caused a marked decline in ATP (44-56%), PCr (49-64%), total adenine nucleotides (TAN, 45-50%) and total creatine compounds (TCC, 32-51%). Within three days, the hippocampus showed the greatest recovery, as the reduced values returned to normal. Pretreatment of rats with an antioxidant (PBN, 200 mg/kg, i.p., 30 min prior to KA; or vitamin E (Vit-E), 100 mg/kg, i.p./day for 3 days), which did not prevent seizure activity, attenuated depletion of high-energy phosphates caused by KA. These findings suggest that the depletion of energy metabolites caused by KA-induced seizures may be linked to oxidative stress mediated toxicity.
机译:能量代谢受损可能在海藻酸(KA)引起的癫痫持续状态(SE)引起的神经元损伤中发挥关键作用。急性剂量的KA(15 mg / kg,s.c.)后,大鼠在1小时内出现SE。使用头部聚焦微波技术在SE发作后1或72 h处死大鼠,并分析大脑区域(梨状皮层,杏仁核和海马体)的能量代谢产物:ATP,ADP,AMP,磷酸肌酸(PCr)和肌酸( Cr),使用反相HPLC(RP-HPLC)。皮质中的对照值显着高于其他大脑区域(23-32%)。在1小时内,SE导致ATP(44-56%),PCr(49-64%),总腺嘌呤核苷酸(TAN,45-50%)和总肌酸化合物(TCC,32-51%)明显下降。在三天内,海马显示出最大的恢复,因为降低的值恢复正常。用抗氧化剂(PBN,200 mg / kg,腹腔注射,在KA前30分钟;或维生素E(Vit-E),100 mg / kg,腹腔注射/天,连续3天)进行预处理,这不会阻止癫痫发作,可减轻KA引起的高能磷酸盐的消耗。这些发现表明由KA诱发的癫痫发作引起的能量代谢产物耗竭可能与氧化应激介导的毒性有关。

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