首页> 外文期刊>Life sciences >(+)-Morphine attenuates the (-)-morphine-produced tail-flick inhibition via the sigma-1 receptor in the mouse spinal cord.
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(+)-Morphine attenuates the (-)-morphine-produced tail-flick inhibition via the sigma-1 receptor in the mouse spinal cord.

机译:(+)-吗啡通过小鼠脊髓中的sigma-1受体减弱(-)-吗啡产生的甩尾抑制作用。

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摘要

AIMS: We have previously demonstrated that pretreatment with (+)-morphine given intrathecally attenuates the intrathecal (-)-morphine-produced tail-flick inhibition. The phenomenon has been defined as antianalgesia against (-)-morphine-produced analgesia. Present experiments were then undertaken to determine if the antianalgesic effect induced by (+)-morphine given spinally is mediated by the stimulation of the sigma-1 receptor in the mouse spinal cord. MAIN METHODS: Sigma-1 receptor ligands, N-[2-(3,4-Dichlorophenyl)ethyl]-N-methyl-2-(dimethylamino)ethylamine dihydrobromide (BD1047) and (+)-pentazocine were used to determine if (+)-morphine-induced antianalgesia is mediated by the stimulation of sigma-1 receptors in the mouse spinal cord. Tail-flick test was employed to measure the nociceptive response. All compounds were given intrathecally. KEY FINDINGS: Pretreatment with BD1047 (1-10 mug) or (+)-pentazocine (0.1-10 mug) dose-dependently reversed the attenuation of the (-)-morphine-produced tail-flick inhibition induced by (+)-morphine (10 pg). BD1047 and (+)-pentazocine injected alone did not affect (-)-morphine-produced tail-flick inhibition. SIGNIFICANCE: The finding indicates that (+)-morphine attenuates the (-)-morphine-produced tail-flick inhibition via the activation of the sigma-1 receptors in the mouse spinal cord. Sigma-1 receptors may play an important role in opioid analgesia in the mouse spinal cord.
机译:目的:我们以前已经证明鞘内给予(+)-吗啡预处理可以减轻鞘内(-)-吗啡产生的甩尾抑制作用。该现象已被定义为对(-)-吗啡产生的镇痛的镇痛作用。然后进行本实验以确定由脊髓给予的(+)-吗啡诱导的抗痛药作用是否由小鼠脊髓中sigma-1受体的刺激介导。主要方法:使用Sigma-1受体配体N- [2-(3,4-二氯苯基)乙基] -N-甲基-2-(二甲基氨基)乙胺二氢溴酸盐(BD1047)和(+)-戊唑嗪来确定( +)-吗啡诱导的镇痛作用是通过刺激小鼠脊髓中的sigma-1受体介导的。甩尾试验用于测量伤害感受。鞘内给予所有化合物。主要发现:用BD1047(1-10杯)或(+)-喷他佐辛(0.1-10杯)进行预处理可剂量依赖性地逆转由(+)-吗啡引起的(-)-吗啡产生的甩尾抑制的减弱。 (10 pg)。单独注射的BD1047和(+)-喷他佐辛不影响(-)-吗啡产生的甩尾抑制。意义:该发现表明,(+)-吗啡通过激活小鼠脊髓中的sigma-1受体来减弱(-)-吗啡产生的甩尾抑制。 Sigma-1受体可能在小鼠脊髓的阿片类镇痛中起重要作用。

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