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Mechanisms of the antinociceptive action of (?) Epicatechin obtained from the hydroalcoholic fraction of Combretum leprosum Mart & Eic in rodents

机译:从麻风菊(Combretum leprosum Mart&Eic)的水醇馏分中获得的(?)表儿茶素的抗伤害作用机理在啮齿动物中

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BackgroundThe mechanisms of the antinociceptive activity of (?) epicatechin (EPI), a compound isolated from the hydroalcoholic fraction of Combreum leprosum Mart & Eicher.Methodswere assessed in the model of chemical nociception induced by glutamate (20?μmol/paw). To evaluate the mechanisms involved, the animals , male Swiss mice (25-30?g), received EPI (50?mg/kg p.o.) after pretreatment with naloxone (2?mg/kg?s.c. opioid antagonist), glibenclamide (2?mg/kg?s.c. antagonist K?+?channels sensitive to ATP), ketanserin (0.3?mg/kg?s.c. antagonist of receptor 5-HT2A), yoimbine (0.15?mg/kg?s.c. α2 adrenergic receptor antagonist), pindolol (1?mg/kg?s.c. 5-HT1a/1b receptor antagonist), atropine (0.1?mg/kg?s.c. muscarinic antagonist) and caffeine (3?mg/kg?s.c. adenosine receptor antagonist), ondansetron (0.5?mg/kg?s.c. for 5-HT3 receptor) and L-arginine (600?mg/kg?i.p.).ResultsThe antinociceptive effect of EPI was reversed by pretreatment with naloxone and glibenclamide, ketanserin, yoimbine, atropine and pindolol, which demonstrates the involvement of opioid receptors and potassium channels sensitive to ATP, the serotoninergic (receptor 5HT1A and 5HT2A), adrenergic (receptor alpha 2) and cholinergic (muscarinic receptor) systems in the activities that were observed. The effects of EPI, however, were not reversed by pretreatment with caffeine, L-arginine or ondansetron, which shows that there is no involvement of 5HT3 receptors or the purinergic and nitrergic systems in the antinociceptive effect of EPI. In the Open Field and Rotarod test, EPI had no significant effect, which shows that there was no central nervous system depressant or muscle relaxant effect on the results.ConclusionsThis study demonstrates that the antinociceptive activity of EPI in the glutamate model involves the participation of the opioid system, serotonin, adrenergic and cholinergic.
机译:背景从麻风菊(Combrum leprosum Mart&Eicher)的水醇馏分中分离出的一种化合物(?)表儿茶素(EPI)的抗伤害作用的机理在谷氨酸(20?μmol/ paw)诱导的化学伤害模型中评估了方法。为了评估所涉及的机制,在用纳洛酮(2?mg / kg?sc阿片类拮抗剂),格列苯脲(2?g)预处理的雄性瑞士小鼠(25-30?g)中接受了EPI(50?mg / kg po)。 mg / kg?sc拮抗剂对ATP敏感的K +通道),酮色林(受体5-HT2A的0.3?mg / kg?sc拮抗剂),约英宾(0.15?mg / kg?scα2肾上腺素能受体拮抗剂),哌多洛尔( 1?mg / kg?sc 5-HT1a / 1b受体拮抗剂),阿托品(0.1?mg / kg?sc毒蕈碱拮抗剂)和咖啡因(3?mg / kg?sc腺苷受体拮抗剂),恩丹西酮(0.5?mg / kg结果:5-HT3受体的?sc)和L-精氨酸(600?mg / kg?ip)。 ATP,5-羟色胺能(5HT1A和5HT2A受体),肾上腺素能(α2受体)和胆碱能(毒蕈碱受体)系统中对ATP敏感的受体和钾通道,重新观察。但是,用咖啡因,L-精氨酸或恩丹西酮进行预处理并不能逆转EPI的作用,这表明EPI的抗伤害感受作用不涉及5HT3受体或嘌呤能和硝能系统。在Open Field和Rotarod试验中,EPI没有显着影响,表明对结果没有任何中枢神经系统抑制作用或肌肉松弛作用。结论本研究表明,EPI在谷氨酸模型中的抗伤害感受活性涉及药物的参与。阿片系统,5-羟色胺,肾上腺素能和胆碱能。

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