首页> 外文期刊>European Journal of Pharmacology: An International Journal >Role of the histamine system in nefopam-induced antinociception in mice.
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Role of the histamine system in nefopam-induced antinociception in mice.

机译:组胺系统在奈福opa诱导的小鼠抗伤害感受中的作用。

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The present study explored the role of the histaminergic system in nefopam analgesia based on the structural relationship between nefopam and diphenhydramine. In vitro binding assays revealed that nefopam possesses moderate affinity for histamine H(1) and H(2) receptor subtypes, with IC(50) of 0.8 and 6.9 渭M, respectively, but no affinity for histamine H(3) receptor subtype until 100 渭M. Subcutaneous nefopam administration dose-dependently inhibited pain in acetic acid-induced writhing (1-30 mg/kg) and formalin (1-10 mg/kg) tests in the mouse. Pretreatment with the histamine-depleting agent alpha-fluoromethylhistidine (alpha-FMH, 50 mg/kg), the histamine H(1) receptor antagonist pyrilamine (3 or 10 mg/kg), or the histamine H(2) receptor antagonists cimetidine (100 mg/kg) and zolantidine (10 or 30 mg/kg) did not significantly modify nefopam antinociception in both tests. The histamine H(3) receptor agonist R(-)alpha-methylhistamine (RAMH, 10 mg/kg) did not significantly modify the nefopam analgesic activity in the writhing test. At 25 mg/kg, RAMH inhibited nefopam antinociception at 3 mg/kg, but not at 10 mg/kg in the formalin test. However, pretreatment with the histamine H(3) receptor antagonist thioperamide (25 mg/kg) inhibited nefopam antinociception in the writhing test, but not in the formalin test. In conclusion, nefopam analgesic activity is not mediated by histamine H(1) or H(2) receptors, but can be slightly modulated by histamine H(3) receptors in mouse pain tests.
机译:基于奈福ne与苯海拉明之间的结构关系,本研究探讨了组胺能系统在奈福opa镇痛中的作用。体外结合试验显示,奈福opa对组胺H(1)和H(2)受体亚型具有中等亲和力,IC(50)分别为0.8和6.9μM,但对组胺H(3)受体亚型没有亲和力,直到100微米在小鼠的乙酸诱导扭体试验(1-30 mg / kg)和福尔马林试验(1-10 mg / kg)中,皮下注射奈福opa的剂量依赖性抑制疼痛。用组胺消耗剂α-氟甲基组氨酸(alpha-FMH,50 mg / kg),组胺H(1)受体拮抗剂吡拉明(3或10 mg / kg)或组胺H(2)受体拮抗剂西咪替丁( 100 mg / kg)和佐兰定(10或30 mg / kg)在两个试验中均未显着改变奈福opa的抗伤害感受。组胺H(3)受体激动剂R(-)α-甲基组胺(RAMH,10 mg / kg)在扭体试验中并未显着改变奈福f镇痛活性。在25 mg / kg的剂量下,RAMH在福尔马林测试中以3 mg / kg的剂量抑制了nefopam的抗伤害感受,但在10 mg / kg的剂量下则没有。但是,在扭体试验中用组胺H(3)受体拮抗剂thioperamide(25 mg / kg)进行预处理可抑制奈福opa的镇痛作用,而在福尔马林试验中则不能。总之,奈福opa镇痛活性不是由组胺H(1)或H(2)受体介导的,但在小鼠疼痛试验中可以由组胺H(3)受体稍微调节。

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