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首页> 外文期刊>Fundamental & clinical pharmacology. >Neuropharmacological effects of lipoic acid and ubiquinone on delta-aminolevulinic dehydratase, Na(+) , K(+) -ATPase, and Mg(2+) -ATPase activities in rat hippocampus after pilocarpine-induced seizures.
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Neuropharmacological effects of lipoic acid and ubiquinone on delta-aminolevulinic dehydratase, Na(+) , K(+) -ATPase, and Mg(2+) -ATPase activities in rat hippocampus after pilocarpine-induced seizures.

机译:硫辛酸和泛醌对毛果芸香碱诱发癫痫发作后大鼠海马中δ-氨基乙酰丙酸脱水酶,Na(+),K(+)-ATPase和Mg(2 +)-ATPase活性的神经药理作用。

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In this study, we investigated the effects of lipoic acid (LA) in the hippocampus oxidative stress caused by pilocarpine-induced seizures in adult rats. Wistar rats were treated with 0.9% saline (i.p., control group), LA (10mg/kg, i.p., LA group), ubiquinone [20mg/kg, i.p., ubiquinone (UQ) group], pilocarpine (400mg/kg, i.p., P400 group), and the association of LA (10mg/kg, i.p.) plus pilocarpine (400mg/kg, i.p.) or UQ (20mg/kg, i.p.) plus pilocarpine (400mg/kg, i.p.), 30min before of administration of P400 (LA plus P400 group and UQ plus P400 group, respectively). After the treatments, all groups were observed for 1h. The enzyme activities (delta-aminolevulinic dehydratase (delta-ALA-D), Mg(2+) -ATPase, and Na(+) , K(+) -ATPase) were measured using spectrophotometric methods, and the results compared to values obtained from saline and pilocarpine-treated animals. Protective effects of LA and UQ were also evaluated on the same parameters. We reported here for the first time that Na(+) , K(+) -ATPase and delta-ALA-D activities inhibition and Mg(2+) -ATPase stimulation in the pilocarpine model are probably attributed to the oxidative stress caused by seizures in the rat hippocampus. The addition of the antioxidants LA and UQ may reverses the previously mentioned Na(+) , K(+) -ATPase and delta-ALA-D inhibitions and Mg(2+) -ATPase stimulation. CONCLUSIONS: The oxidative stress plays an important signaling role in pilocarpine-induced seizures, and antioxidant drugs might be considered as therapeutical tools in this pathology.
机译:在这项研究中,我们调查了硫辛酸(LA)在毛果芸香碱引起的成年大鼠海马氧化应激中的作用。 Wistar大鼠接受0.9%生理盐水(ip,对照组),LA(10mg / kg,ip,LA组),泛醌[20mg / kg,ip,泛醌(UQ)组],毛果芸香碱(400mg / kg,ip, P400组),以及在服用P400前30分钟服用LA(10mg / kg,ip)加毛果芸香碱(400mg / kg,ip)或UQ(20mg / kg,ip)加毛果芸香碱(400mg / kg,ip)的关联(分别为LA加P400组和UQ加P400组)。治疗后,观察所有组1小时。使用分光光度法测量酶活性(δ-氨基乙酰丙酸脱水酶(δ-ALA-D),Mg(2 +)-ATPase和Na(+),K(+)-ATPase),并将结果与​​所得值进行比较来自盐水和毛果芸香碱处理过的动物。还用相同的参数评估了LA和UQ的保护作用。我们在这里首次报道,毛果芸香碱模型中的Na(+),K(+)-ATPase和delta-ALA-D活性抑制和Mg(2+)-ATPase刺激可能归因于癫痫发作引起的氧化应激在大鼠海马中。抗氧化剂LA和UQ的添加可能会逆转先前提到的Na(+),K(+)-ATPase和delta-ALA-D抑制作用以及Mg(2+)-ATPase刺激作用。结论:氧化应激在毛果芸香碱引起的癫痫发作中起重要的信号传导作用,抗氧化剂可能被认为是这种病理学的治疗工具。

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