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首页> 外文期刊>Pain research & management: the journal of the Canadian Pain Society = journal de la socie?te? canadienne pour le traitement de la douleur >Antinociceptive Activity of Methanolic Extract of Clinacanthus nutans Leaves: Possible Mechanisms of Action Involved
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Antinociceptive Activity of Methanolic Extract of Clinacanthus nutans Leaves: Possible Mechanisms of Action Involved

机译:Clinacanthus Nutans的甲醇提取物的抗血质活性叶:所涉及的可能作用机制

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摘要

Methanolic extract of Clinacanthus nutans Lindau leaves (MECN) has been proven to possess antinociceptive activity that works via the opioid and NO-dependent/cGMP-independent pathways. In the present study, we aimed to further determine the possible mechanisms of antinociception of MECN using various nociceptive assays. The antinociceptive activity of MECN was (i) tested against capsaicin-, glutamate-, phorbol 12-myristate 13-acetate-, bradykinin-induced nociception model; (ii) prechallenged against selective antagonist of opioid receptor subtypes (β-funaltrexamine, naltrindole, and nor-binaltorphimine); (iii) prechallenged against antagonist of nonopioid systems, namely, α2-noradrenergic (yohimbine), β-adrenergic (pindolol), adenosinergic (caffeine), dopaminergic (haloperidol), and cholinergic (atropine) receptors; (iv) prechallenged with inhibitors of various potassium channels (glibenclamide, apamin, charybdotoxin, and tetraethylammonium chloride). The results demonstrated that the orally administered MECN (100, 250, and 500?mg/kg) significantly (p<0.05) reversed the nociceptive effect of all models in a dose-dependent manner. Moreover, the antinociceptive activity of 500?mg/kg MECN was significantly (p<0.05) inhibited by (i) antagonists of μ-, δ-, and κ-opioid receptors; (ii) antagonists of α2-noradrenergic, β-adrenergic, adenosinergic, dopaminergic, and cholinergic receptors; and (iii) blockers of different K+ channels (voltage-activated-, Ca2+-activated, and ATP-sensitive-K+ channels, resp.). In conclusion, MECN-induced antinociception involves modulation of protein kinase C-, bradykinin-, TRVP1 receptors-, and glutamatergic-signaling pathways; opioidergic, α2-noradrenergic, β-adrenergic, adenosinergic, dopaminergic, and cholinergic receptors; and nonopioidergic receptors as well as the opening of various K+ channels. The antinociceptive activity could be associated with the presence of several flavonoid-based bioactive compounds and their synergistic action with nonvolatile bioactive compounds.
机译:已被证明,Clinacanthus Nutans Lindau叶片(Mecn)的甲醇提取物具有通过阿片类药物和无依赖/ CGMP的途径作用的抗血巧活性。在本研究中,我们旨在通过各种伤害测定进一步确定MECN抗妇科的可能机制。 Mecn的抗血质活性活性是(i)对辣椒素,谷氨酸 - ,Phorbol 12-myristerate 13-醋酸肽,Bradykinin诱导的伤害模型进行测试; (ii)对阿片受体亚型的选择性拮抗剂(β-促募症,Naltrindole和Nor-Binaltorphimine)进行预充电; (iii)对拮抗非磷系统,即α2-诺拉肾上腺素能(亚莫宾),β-肾上腺素能(己烯醇),腺苷剂(咖啡因),多巴胺能(卤代丙酮)和胆碱能(阿托哌啶)受体进行孕育。 (iv)用各种钾通道的抑制剂(Glibenclamide,Apamin,CharybdoToxin和四乙基氯化铵)进行预充电。结果表明,口服施用的MECN(100,250和500×Mg / kg)显着(P <0.05)以剂量依赖性方式扭转了所有模型的伤害效果。此外,由μ-β-和κ-阿片受体的拮抗剂抑制(i)拮抗剂的500〜mg / kg mecn的抗血质活性显着(p <0.05); (ii)α2-诺拉肾上腺素能,β-肾上腺素能,腺苷,多巴胺能和胆碱能受体的拮抗剂; (iii)不同k +通道的阻塞器(电压激活 - ,ca2 + -activated和ATP敏感-K +通道,REAC。)。总之,Mecn诱导的抗闭合体涉及调节蛋白激酶C-,BradykinIn-,Trvp1受体和谷氨酸和谷氨酸信号传导途径; Opioidergic,α2-诺肾上腺素能,β-肾上腺素能,腺苷能,多巴胺能和胆碱能受体;和非缺乏的受体以及各种K +通道的开口。抗血统活性可能与具有几种基于类黄酮类的生物活性化合物的存在以及与非挥发性生物活性化合物的协同作用相关。

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