首页> 外文期刊>Molecular pain >(-)-Pentazocine induces visceral chemical antinociception, but not thermal, mechanical, or somatic chemical antinociception, in μ-opioid receptor knockout mice
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(-)-Pentazocine induces visceral chemical antinociception, but not thermal, mechanical, or somatic chemical antinociception, in μ-opioid receptor knockout mice

机译:(-)-喷他佐辛在μ阿片受体敲除小鼠中诱发内脏化学镇痛作用,但不引起热,机械或体细胞化学镇痛作用

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Background (-)-Pentazocine has been hypothesized to induce analgesia via the κ-opioid (KOP) receptor, although the involvement of other opioid receptor subtypes in the effects of pentazocine remains unknown. In this study, we investigated the role of the μ-opioid (MOP) receptor in thermal, mechanical, and chemical antinociception induced by (-)-pentazocine using MOP receptor knockout (MOP-KO) mice. Results (-)-Pentazocine-induced thermal antinociception, assessed by the hot-plate and tail-flick tests, was significantly reduced in heterozygous and abolished in homozygous MOP-KO mice compared with wildtype mice. The results obtained from the (-)-pentazocine-induced mechanical and somatic chemical antinociception experiments, which used the hind-paw pressure and formalin tests, were similar to the results obtained from the thermal antinociception experiments in these mice. However, (-)-pentazocine retained its ability to induce significant visceral chemical antinociception, assessed by the writhing test, in homozygous MOP-KO mice, an effect that was completely blocked by pretreatment with nor-binaltorphimine, a KOP receptor antagonist. In vitro binding and cyclic adenosine monophosphate assays showed that (-)-pentazocine possessed higher affinity for KOP and MOP receptors than for δ-opioid receptors. Conclusions The present study demonstrated the abolition of the thermal, mechanical, and somatic chemical antinociceptive effects of (-)-pentazocine and retention of the visceral chemical antinociceptive effects of (-)-pentazocine in MOP-KO mice. These results suggest that the MOP receptor plays a pivotal role in thermal, mechanical, and somatic chemical antinociception induced by (-)-pentazocine, whereas the KOP receptor is involved in visceral chemical antinociception induced by (-)-pentazocine.
机译:尽管尚不清楚其他阿片受体亚型是否参与喷他佐辛的作用,但已假设有背景(-)-哌他佐辛可通过κ阿片类药物(KOP)受体诱导镇痛作用。在这项研究中,我们使用MOP受体敲除(MOP-KO)小鼠研究了μ阿片类药物(MOP)受体在热,机械和化学镇痛作用中的作用,该镇痛作用由(-)-戊唑嗪诱导。与野生型小鼠相比,通过热板和甩尾试验评估的结果(-)-喷他佐辛诱导的热镇痛作用在杂合子中显着降低,在纯合子MOP-KO小鼠中被消除。使用后爪压力和福尔马林测试从(-)-戊唑嗪诱导的机械和体化学抗伤害感受实验中获得的结果与从这些小鼠的热抗伤害感受实验中获得的结果相似。然而,(-)-喷他佐辛在纯合的MOP-KO小鼠中保留了其诱导明显的内脏化学镇痛作用的能力(通过扭体试验评估),这种作用已通过用KOP受体拮抗剂nor-binaltorphimine预处理而被完全阻断。体外结合和环状单磷酸腺苷分析表明,(-)-戊唑嗪对KOP和MOP受体的亲和力高于对δ-阿片样受体的亲和力。结论本研究表明,在MOP-KO小鼠中,(-)-喷他佐辛的热,机械和体细胞化学镇痛作用已被消除,而(-)-喷他佐辛的内脏化学镇痛作用得以保留。这些结果表明,MOP受体在由(-)-戊唑嗪诱导的热,机械和体细胞化学镇痛中起关键作用,而KOP受体参与由(-)-戊唑嗪诱导的内脏化学镇痛。

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