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首页> 外文期刊>Cellular and Molecular Neurobiology >The role of nitric oxide in homocysteine thiolactone-induced seizures in adult rats.
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The role of nitric oxide in homocysteine thiolactone-induced seizures in adult rats.

机译:一氧化氮在高半胱氨酸硫代内酯诱导的成年大鼠癫痫发作中的作用。

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The role of NO in epileptogenesis has been studied in different experimental models, and the reported results have been highly contradictory. The current study aimed to determine the role of NO in mechanisms of D: ,L: -homocysteine-thiolactone (H) induced seizures by testing the action of L: -arginine (NO precursor) and L: -NAME (NOS inhibitor) on behavioral and electroencephalographic (EEG) manifestations of H-induced seizures. The same holds true with the brain Na(+)/K(+)- and Mg(2+)-ATPase activity in adult male Wistar rats. We showed that the pretreatment with L: -arginine (300, 600 and 800 mg/kg, i.p.) in a dose-dependent manner significantly decreased lethality, seizure incidence and a number of seizure episodes and prolonged latency time to the first seizure elicited by a convulsive dose of H (8 mmol/kg, i.p.). L: -Arginine (800 mg/kg) completely reversed the inhibitory effect of H on the Na(+)/K(+)-ATPase activity in the hippocampus, the cortex and the brain stem and decreased the H-induced spike-and- wave discharges (SWD) formation in EEG. On the other hand, pretreatment with L: -NAME (200, 500 and 700 mg/kg, i.p.) potentiated a subconvulsive dose of H (5.5 mmol/kg, i.p) by increasing incidence and severity determined by a descriptive-rating scale (0-4) and shortening the latency time to the first seizure. The L: -NAME reversed H-induced alterations in the Na(+)/K(+)-ATPase activity in the cortex and the brain stem but not in the hippocampus. At last, the potentiated SWD appearance in EEG and an increased number of lethal outcomes occurred. In the present work, the modulation of NO levels, with the NO precursor and NOS inhibitor, was shed more light on its mechanism of action and answered the question whether NO could be included in the list of anticonvulsant agents in the D: ,L: -homocysteine thiolactone experimental model of seizures in adult rats.
机译:NO在癫痫发生中的作用已在不同的实验模型中进行了研究,报道的结果高度矛盾。当前的研究旨在通过测试L:-精氨酸(NO前体)和L:-NAME(NOS抑制剂)对D:,L:-高半胱氨酸-硫代内酯(H)诱发癫痫发作的机制的作用,确定NO的作用。 H诱发的癫痫发作的行为和脑电图(EEG)表现。成年雄性Wistar大鼠的大脑Na(+)/ K(+)-和Mg(2 +)-ATPase活性也是如此。我们显示,L:-精氨酸(300、600和800 mg / kg,腹膜内)的剂量依赖性预处理显着降低了致死性,癫痫发作的发生率和许多癫痫发作的发作,并延长了首次诱发癫痫发作的潜伏时间。惊厥剂量的H(8 mmol / kg,ip)。 L:-精氨酸(800 mg / kg)完全逆转了H对海马,皮质和脑干中Na(+)/ K(+)-ATPase活性的抑制作用,并降低了H诱导的突触和-脑电中的波放电(SWD)形成。另一方面,用L:-NAME(200、500和700 mg / kg,腹膜内)预处理可通过增加描述性评分量表确定的发生率和严重性来增强H的亚抽搐剂量(5.5 mmol / kg,ip)。 0-4),并缩短了首次发作的潜伏时间。 L:-NAME逆转了H诱导的皮质和脑干而不是海马中Na(+)/ K(+)-ATPase活性的变化。最后,脑电图中增强的SWD外观和致死性结果增加。在目前的工作中,通过NO前体和NOS抑制剂对NO水平的调节更加阐明了其作用机理,并回答了D是否可将NO包括在抗惊厥药列表中的问题: -高半胱氨酸硫代内酯成年大鼠癫痫发作的实验模型。

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