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首页> 外文期刊>Pharmacology, Biochemistry and Behavior >Activity of nicorandil, a nicotinamide derivative with a nitrate group, in the experimental model of pain induced by formaldehyde in mice
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Activity of nicorandil, a nicotinamide derivative with a nitrate group, in the experimental model of pain induced by formaldehyde in mice

机译:尼可地尔(一种具有硝酸根基团的烟酰胺衍生物)在甲醛引起的小鼠疼痛实验模型中的活性

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Nicorandil (2-nicotinamide ethyl nitrate), an antianginal drug characterized by the coupling of nicotinamide with a nitric oxide (NO) donor, activates guanylyl cyclase and opens ATP-dependent K+ channels. In the present study, we investigated the effects induced by per os (p.o.) administration of nicorandil (12.5, 25 or 50 mg/kg) or equimolar doses (corresponding to the highest dose of nicorandil) of N-(2-hydroxyethyl) nicotinamide (NHN), its main metabolite, or nicotinamide in the model of nociceptive response induced by formaldehyde in mice. Nicorandil, but not NHN or nicotinamide, inhibited the second phase of the nociceptive response. This activity was observed when nicorandil was administered between 30 and 120 min before the injection of formaldehyde. Ipsilateral intraplantar injection of nicorandil (125, 250 or 500 μg/paw) did not inhibit the nociceptive response. After p.o. administration of nicorandil (50 mg/kg), peak plasma concentrations of this compound and NHN were observed 0.63 and 4 h later, respectively. Nicotinamide concentrations were not increased after administration of nicorandil. 1H-[1,2,4]oxadiazolo[4,3-a]quinoxalin-1-one (ODQ; 1 or 2 mg/kg), a guanylyl cyclase inhibitor, partially attenuated the antinociceptive activity of nicorandil. However, this activity was not changed by glibenclamide (30 or 60 mg/kg), an inhibitor of ATP-dependent K+ channels. In conclusion, we demonstrated the antinociceptive activity of nicorandil in a model of pain that exhibits both a nociceptive and an inflammatory profile. This activity is not mediated by nicotinamide or NHN. The coupling of an NO-donor to nicotinamide results in a compound with an increased potency. The NO-cGMP pathway, but not ATP-dependent K+ channels, partially mediates the antinociceptive activity of nicorandil.
机译:尼古拉地尔(2-烟酰胺乙基硝酸盐)是一种抗心绞痛药物,其特征在于烟酰胺与一氧化氮(NO)供体偶联,可激活鸟苷酸环化酶并打开ATP依赖性K +通道。在本研究中,我们调查了口服(尼古丁定剂量)给予尼可地尔(12.5、25或50 mg / kg)或等摩尔剂量(对应于尼可地尔的最高剂量)N-(2-羟乙基)烟酰胺引起的影响。 (NHN),其主要代谢物或烟酰胺在小鼠甲醛引起的伤害反应模型中。尼古拉地尔(而非NHN或烟酰胺)抑制了伤害性反应的第二阶段。在注射甲醛前30至120分钟之间给予尼可地尔可观察到这种活性。同侧足底注射尼可地尔(125、250或500μg/爪)不会抑制伤害反应。下午之后尼可地尔(50 mg / kg)给药后,该化合物和NHN的峰值血浆浓度分别在0.63和4小时后观察到。服用尼可地尔后烟酰胺浓度没有增加。 1H- [1,2,4]恶二唑并[4,3-a]喹喔啉-1-酮(ODQ; 1或2 mg / kg)是鸟苷酸环化酶抑制剂,部分减弱了尼可地尔的镇痛作用。但是,格列本脲(30或60 mg / kg)(ATP依赖性K +通道的抑制剂)没有改变这种活性。总之,我们证明了尼可地尔在一种既具有伤害感受性又具有炎症性特征的疼痛模型中的抗伤害感受活性。该活性不是由烟酰胺或NHN介导的。 NO供体与烟酰胺的偶联导致化合物的效力增加。 NO-cGMP途径而非ATP依赖的K +通道部分介导了尼可地尔的抗伤害感受活性。

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