首页> 外文期刊>Clinical and experimental pharmacology & physiology >Suppressive effects of oxcarbazepine on tooth pulp-evoked potentials recorded at the trigeminal spinal tract nucleus in cats.
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Suppressive effects of oxcarbazepine on tooth pulp-evoked potentials recorded at the trigeminal spinal tract nucleus in cats.

机译:奥卡西平对猫三叉神经脊髓核记录的牙髓诱发电位的抑制作用。

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摘要

1. The purpose of the present study was to evaluate the antinociceptive effect of oxcarbazepine, a keto derivitive of carbamazepine (an anticonvulsant), in an animal model. To evoke a nociceptive response, we electrically stimulated the maxillary canine tooth pulp (MCTP) in anaesthetized (allobarbital-urethane), spontaneously breathing cats. 2. The evoked potentials were recorded from the superficial layers of the caudal part of the trigeminal spinal tract nucleus (5ST). We examined a slow component with a large amplitude (the P3 component) in evoked compound potentials; its mean conduction velocity was 1.7 m/s, suggesting a response mediated by C-fibres. 3. To confirm that the P3 component was related to pain sensation, we used morphine, a most efficacious antinociceptive agent, in the present study. The P3 component was significantly suppressed by intravenous administration of morphine (3 mg/kg) and was also suppressed by microinjection of morphine (2 microg) into the recording site of the 5ST. These results suggest that the P3 component is involved in the transmission of nociceptive information. 4. We compared the effect of oxcarbazepine with mexiletine; both are known to block neuronal Na+ channels. Intravenous administration of mexiletine suppressed the P3 component at a dose of 5 mg/kg. Microinjection of mexiletine (10 microg) into the recording site of the 5ST tended to suppress the P3 component, but this effect was not significant. 5. Intravenous administration of oxcarbazepine (1-10 mg/kg) caused a dose-dependent inhibition of the P3 component, which was significantly suppressed at 10 mg/kg oxcarbazepine. Intravenous administration of 10,11-dihydro-10-hydroxy-5H-dibenz[b,f]azepine-5-carboxamide (MHD), a metabolite of oxcarbazepine, at doses of 3-30 mg/kg caused a dose-dependent inhibition of the P3 component. Oxcarbazepine was not available for the microinjection study because it is not water soluble. We used MHD for the microinjection study instead of oxcarbazepine, because MHD can be dissolved in water up to 3 mg/mL. Microinjections of MHD (6 microg) into the recording site of the 5ST suppressed the P3 component. These results indicate that oxcarbazepine has an antinociceptive action.
机译:1.本研究的目的是评估奥卡西平(一种卡马西平的酮衍生物)(抗惊厥药)在动物模型中的镇痛作用。为了唤起伤害性反应,我们在麻醉的猫(自巴比妥氨基甲酸酯)中自然呼吸了电刺激上颌犬牙髓(MCTP)。 2.从三叉神经脊束核(5ST)的尾部浅表层记录诱发电位。我们研究了诱发的复合电位中具有大振幅的慢速分量(P3分量)。它的平均传导速度为1.7 m / s,表明由C纤维介导的反应。 3.为了证实P3成分与疼痛感相关,我们在本研究中使用了吗啡(一种最有效的镇痛药)。通过静脉内注射吗啡(3 mg / kg)显着抑制了P3成分,并且通过向5ST的记录部位微量注射吗啡(2微克)也抑制了P3成分。这些结果表明,P3组分参与了伤害性信息的传递。 4.我们比较了奥卡西平和美西律的作用;已知两者均阻断神经元Na +通道。美西律的静脉内给药以5 mg / kg的剂量抑制P3成分。将美西律汀(10微克)微注射到5ST的记录位点倾向于抑制P3成分,但是这种作用并不明显。 5.静脉给予奥卡西平(1-10 mg / kg)引起P3成分的剂量依赖性抑制,在10 mg / kg奥卡西平下显着抑制。以3-30 mg / kg的剂量静脉内施用10,11-dihydro-10-hydroxy-5H-dibenz [b,f] azepine-5-carboxamide(MHD)(一种奥卡西平的代谢物)引起剂量依赖性抑制P3组件的奥卡西平不可溶于微注射液,因为它不溶于水。我们将MHD代替奥卡西平用于显微注射研究,因为MHD可以溶解于3 mg / mL的水中。将MHD(6微克)微注射到5ST的记录位点可抑制P3组分。这些结果表明奥卡西平具有镇痛作用。

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