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Sensitivity to μ-opioid receptor-mediated anti-nociception is determined by cross-regulation between μ- And δ-opioid receptors at supraspinal level

机译:对μ阿片受体介导的抗伤害感受的敏感性是通过脊髓上水平的μ阿片和δ阿片受体之间的交叉调节来确定的

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摘要

Background and Purpose The perception of pain and its inhibition varies considerably between individuals, and this variability is still unexplained. The aim of the present study is to determine whether functional interactions between opioid receptors are involved in the inter-individual variability in the sensitivity to μ-opioid receptor agonists. Experimental Approach Anti-nociceptive tests, radioligand binding, stimulation of [ 35S]GTP-γ-S binding, inhibition of cAMP production and co-immunoprecipitation experiments were performed in two strains of rat (Sprague-Dawley bred at our university - SDU - and Wistar) that differ in their sensitivity to opioids. Key Results The increased anti-nociceptive potency of μ-opioid receptor agonists in SDU rats was reversed by the δ-opioid receptor antagonist, naltrindole. Inhibition of the binding of [ 3H] naltrindole by μ-opioid receptor agonists was different in brain membranes from SDU and Wistar rats. Differences were also evident in the effect of δ-opioid receptor ligands on the binding of [ 35S]GTP-γ-S stimulated by μ-opioid receptors agonists. No strain-related differences were detected in spinal cord membranes. The potency of morphine to inhibit cAMP production in brain membranes varied between the strains, in the presence of deltorphin II and naltrindole. Co-immunoprecipitation experiments demonstrated that δ-opioid receptors were associated with μ-opioid receptors to a higher extent in brain synaptosomal fractions from SDU than in those from Wistar rats. Conclusions and Implications There was increased supraspinal cross-talk between μ and δ-opioid receptors in SDU, as compared with Wistar rats. This was related to an enhanced sensitivity to anti-nociception induced by μ-opioid receptor agonists. © 2011 The British Pharmacological Society.
机译:背景和目的疼痛的感知及其抑制作用在个体之间差异很大,并且这种可变性仍无法解释。本研究的目的是确定阿片受体之间的功能相互作用是否涉及对阿片受体激动剂的敏感性的个体间差异。实验方法在两种大鼠(我们大学的Sprague-Dawley育种-SDU-和Wistar)对阿片类药物的敏感性不同。关键结果δ-阿片受体拮抗剂纳曲酮可逆转SDU大鼠中的μ阿片受体激动剂的抗伤害感受力。 μ阿片类受体激动剂对[3 H]萘啶的结合的抑制作用在SDU和Wistar大鼠的脑膜中是不同的。 δ阿片受体配体对μ阿片受体激动剂刺激的[35S]GTP-γ-S结合的影响也很明显。在脊髓膜上未检测到应变相关差异。在存在deltorphin II和naltrindole的菌株之间,吗啡抑制脑膜中cAMP生成的能力各不相同。免疫共沉淀实验表明,与Wistar大鼠相比,SDU的脑突触体组分中δ阿片受体与μ阿片受体的相关性更高。结论和意义与Wistar大鼠相比,SDU中μ和δ-阿片样物质受体之间的脊髓上串扰增加。这与μ阿片受体激动剂引起的抗伤害感受的敏感性增强有关。 ©2011英国药理学会。

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