首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Dose-Dependent Behavioral and Antioxidant Effects of Quercetin and Methanolic and Acetonic Extracts from Heterotheca inuloides on Several Rat Tissues following Kainic Acid-Induced Status Epilepticus
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Dose-Dependent Behavioral and Antioxidant Effects of Quercetin and Methanolic and Acetonic Extracts from Heterotheca inuloides on Several Rat Tissues following Kainic Acid-Induced Status Epilepticus

机译:槲皮素和甲烷醇和乙酸碱提取物的剂量依赖性行为和抗氧化效应在KinaIch酸诱导状态癫痫术后几只大鼠组织上

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Kainic acid (KA) has been used to study the neurotoxicity induced after status epilepticus (SE) due to activation of excitatory amino acids with neuronal damage. Medicinal plants can protect against damage caused by KA-induced SE; in particular, organic extracts of Heterotheca inuloides and its metabolite quercetin display antioxidant activity and act as hepatoprotective agents. However, it is unknown whether these properties can protect against the hyperexcitability underlying the damage caused by KA-induced SE. Our aim was to study the protective effects (with regard to behavior and antioxidant activity) of administration of natural products methanolic (ME) and acetonic (AE) extracts and quercetin (Q) from H. inuloides at doses of 30?mg/kg (ME30, AE30, and Q30 groups), 100?mg/kg (ME100, AE100, and Q100 groups), and 300?mg/kg (ME300, AE300, and Q300 groups) against damage in brain regions of male Wistar rats treated with KA. We found dose-dependent effects on behavioral and biochemical studies in the all-natural product groups vs. the control group, with decreases in seizure severity (Racine’s scale) and increases in seizure latency (p0.05 in the ME100, AE100, Q100, and Q300 groups and p0.01 in the AE300 and ME300 groups); on lipid peroxidation and carbonylated proteins in all brain tissues (p0.0001); and on GPx, GR, CAT, and SOD activities with all the treatments vs. KA (p≤0.001). In addition, there were strong negative correlations between carbonyl levels and latency in the group treated with KA and in the group treated with methanolic extract in the presence of KA (r=‐0.9919, p=0.0084). This evidence suggests that organic extracts and quercetin from H. inuloides exert anticonvulsant effects via direct scavenging of reactive oxygen species (ROS) and modulation of antioxidant enzyme activity.
机译:由于激发性氨基酸的激活源于神经元损伤,已用于研究癫痫氨基酸的神经毒性诱导的神经毒性。药用植物可以防止由KA诱导的SE引起的损伤;特别地,异噻段含有的有机萃取物及其代谢物槲皮素显示抗氧化活性,并充当肝保护剂。然而,尚不清楚这些属性是否可以防止受KA诱导的SE引起的损害的过度抑制性。我们的目的是研究从30μlmg/ kg的剂量( ME30,AE30和Q30组),100?Mg / kg(ME100,AE100和Q100组),以及300?Mg / kg(ME300,AE300和Q300组),免受血汗大鼠脑区域损伤的伤害K A。我们发现对对照组的所有天然产物基团的行为和生化研究的剂量依赖性作用,癫痫发作严重程度(RACINE的规模)降低,癫痫发作潜伏期增加(ME100中的P <0.05,AE100,Q100, AE300和ME300组中的Q300组和P <0.01);在所有脑组织中的脂质过氧化和羰基化蛋白质(P <0.0001);在GPX,GR,CAT和SOD活动中,所有治疗与Ka(P≤0.001)。此外,用Ka处理的基团中的羰基水平和潜伏期之间存在强烈的负相关性,并且在Ka存在下用甲醇提取物处理的基团(r = -0.9919,p = 0.0084)。该证据表明,来自H. inuloides的有机萃取物和槲皮素通过直接清除反应性氧(ROS)和抗氧化酶活性的调节施加抗惊厥作用。

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