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Synergistic analgesic effects between neuronostatin and morphine at the supraspinal level

机译:神经抑素和吗啡在脊髓上水平的协同镇痛作用

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Neuronostatin, a 13-amino acid peptide, is encoded in the somatostatin pro-hormone. I.c.v. administration of neuronostatin produces a significant antinociceptive effect in the mouse tail-flick test, which is mediated by endogenous opioid receptor. However, the direct functional interaction between morphine and neuronostatin has not been characterized. In the present study, effect of neuronostatin on morphine analgesia was investigated in the tail-flick test. Our findings showed that i.c.v. administration of neuronostatin (0.3 nmol/mouse i.c.v.) significantly enhanced the antinociceptive effect of morphine (2.5, 5 or 10 μg/kg) at the supraspinal level. Results of antagonism experiments suggested that the synergistic analgesia induced by morphine and neuronostatin was mediated by μ- and -opioid receptors not δ-opioid receptor. In conclusion, there may be a cascade amplification phenomenon when morphine and neuronostatin were co-administered in acute pain model. The above results provide evidence for the potential use of neuronostatin in combination with morphine to control pain and addiction.
机译:神经抑素是一种13个氨基酸的肽,在生长抑素原激素中编码。 I.c.v.他汀类药物的给药在小鼠甩尾试验中产生了显着的镇痛作用,这是由内源性阿片受体介导的。但是,吗啡和神经抑素之间的直接功能相互作用尚未被表征。在本研究中,通过甩尾试验研究了神经抑素对吗啡镇痛的作用。我们的调查结果显示,神经抑制素(0.3 nmol /小鼠静脉内)的给药在脊髓上水平显着增强了吗啡(2.5、5或10μg/ kg)的抗伤害感受作用。拮抗作用的结果表明吗啡和神经抑素的协同镇痛作用是由μ和阿片受体而不是δ阿片受体介导的。结论:吗啡和神经抑素在急性疼痛模型中同时使用可能会出现级联放大现象。以上结果提供了神经抑素与吗啡联用以控制疼痛和成瘾的潜在用途的证据。

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