阿片受体和α - 2肾上腺素受体激动剂对新生大鼠腹侧根慢电位及辣椒素和福尔马林试验的影响

Ken-ichi Otsuguro, Sumiko Yasutake, Toshio Ohta, Shigeo Ito
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引用次数: 25

摘要

比较吗啡和α2肾上腺素受体激动剂对新生儿大鼠脊髓同侧背根刺激后慢腹侧根电位(slow ventral root potential, slow VRP)的抑制作用,并比较其对新生大鼠福尔马林和辣椒素的镇痛作用。吗啡、(D-Phe2、D-Pen5)-脑啡肽(DPDPE)、右美托咪定、可乐定、噻嗪对慢速VRP的抑制呈浓度相关。效价顺序为右美托咪定>吗啡= DPDPE >可乐定比;甲苯噻嗪。阿片受体激动剂和α2-肾上腺素受体激动剂的抑制作用分别被阿片受体拮抗剂纳洛酮和α2-肾上腺素受体拮抗剂阿替帕唑所消除。没有交叉拮抗作用。吗啡、右美托咪定和噻嗪剂量依赖性地抑制福尔马林或辣椒素诱导的身体运动。效价顺序为右美托咪定>吗啡比;甲苯噻嗪。虽然吗啡和右美托咪定在相同剂量范围内抑制福尔马林和辣椒素诱导的身体运动,但与辣椒素诱导的身体运动相比,氯嗪在较低浓度下抑制福尔马林诱导的身体运动。这些药物对慢速VRP的抑制效力似乎与辣椒素诱导的体运动相关,而与福尔马林诱导的体运动无关。右美托咪定与吗啡联用可加性抑制辣椒素诱导的缓慢VRP和体运动。提示右美托咪定和吗啡在辣椒素试验中的抗伤害性作用主要是由于脊髓效应,右美托咪定和吗啡在新生大鼠中不存在协同作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of opioid receptor and α2-adrenoceptor agonists on slow ventral root potentials and on capsaicin and formalin tests in neonatal rats

The inhibitory effects of morphine and α2-adrenoceptor agonists on slow ventral root potentials (slow VRP) following ipsilateral dorsal root stimulation in neonatal rat spinal cord were compared with the analgesic effects of these drugs on formalin and capsaicin tests in neonatal rats. Morphine, (D-Phe2, D-Pen5)-enkephalin (DPDPE), dexmedetomidine, clonidine and xylazine showed concentration-related inhibition of slow VRP. The order of potency was dexmedetomidine  > morphine = DPDPE > clonidine > xylazine. The inhibitory effects of opioid agonists and α2-adrenoceptor agonists were abolished by naloxone, an opioid antagonist, and atipamezole, an α2-adrenoceptor antagonist, respectively. There was no cross antagonism. Morphine, dexmedetomidine and xylazine dose-dependently inhibited body movement induced by formalin or capsaicin. The order of potency was dexmedetomidine > morphine > xylazine. Although morphine and dexmedetomidine inhibited formalin- and capsaicin-induced body movement in the same dose range, xylazine inhibited formalin-induced body movement at lower concentrations than capsaicin-induced one. The inhibitory potency for slow VRP by these drugs seems to be correlated with that for capsaicin-induced body movement but not that for formalin-induced one. Dexmedetomidine and morphine in combination inhibited slow VRP and body movement induced by capsaicin in an additive manner. It is suggested that the antinociceptive effects of dexmedetomidine and morphine but not xylazine on the capsaicin test are mainly due to spinal effects and that there is no synergistic interaction between dexmedetomidine and morphine in the neonatal rat.

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