首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Activation of opioid receptor like-1 receptor in the spinal cord produces sex-specific antinociception in the rat: estrogen attenuates antinociception in the female, whereas testosterone is required for the expression of antinociception in the male.
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Activation of opioid receptor like-1 receptor in the spinal cord produces sex-specific antinociception in the rat: estrogen attenuates antinociception in the female, whereas testosterone is required for the expression of antinociception in the male.

机译:脊髓中阿片样受体1受体的激活在大鼠中产生性别特异性抗伤害感受性:雌激素可减轻雌性的抗伤害感受性,而睾丸激素是雄性抗伤害感受性表达所必需的。

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摘要

Sex-related differences in the perception and modulation of pain have been reported. The present study is the first to investigate systematically whether activation of opioid receptor-like 1 receptor (ORL1) by orphanin FQ (OFQ) produces sex-specific modulation of spinal nociception and whether estrogen or testosterone contributes to these differences using the rat as an experimental animal. Two behavioral models, the NMDA and heat-induced nociceptive tests, were used to examine sex-specific modulation of spinal nociception. Intrathecal microinjection of OFQ in male, ovariectomized (OVX), and diestrous rats produced a significant antinociceptive effect on both tests. However, OFQ failed to produce antinociception in proestrous rats, the phase of the estrous cycle with the highest levels of circulating estradiol, and produced a dose-dependent effect in OVX females treated with 1 ng to 100 microg of estradiol. The antinociceptive effects of OFQ were dose dependent in male and OVX animals and were reversibly antagonized by UFP-101 ([Nphe1,Arg14,Lys15]N/OFQ(1-13)-NH2), an ORL1 receptor-selective antagonist. Interestingly, OFQ was ineffective in gonadectomized (GDX) males, whereas testosterone replacement restored the antinociceptive effect of OFQ in GDX males. We conclude that OFQ produces sex-specific modulation of spinal nociception; estrogen attenuates antinociception in the female in parallel with normal cycling of estrogen levels, and testosterone is required for the expression of antinociception in the male; thus, the sensitivity of the male to the antinociceptive effects of OFQ is not simply attributable to the intrinsically low estrogen levels in these animals.
机译:已经报道了在疼痛的感知和调节方面与性别有关的差异。本研究是第一个系统地研究孤儿蛋白FQ(OFQ)对阿片样受体样1受体(ORL1)的激活是否产生对脊髓伤害感受的性别特异性调节以及使用大鼠作为实验对象的雌激素或睾丸激素是否有助于这些差异的研究动物。两种行为模型,即NMDA和热诱导的伤害感受测试,被用来检验脊髓伤害感受的性别特异性调节。鞘内注射OFQ在雄性,去卵巢(OVX)和雌性大鼠中均对两种测试产生了显着的抗伤害感受作用。但是,OFQ未能在发情期大鼠中产生抗伤害感受,这是发情周期中循环雌二醇水平最高的阶段,并且在用1 ng至100微克雌二醇治疗的OVX雌性动物中产生剂量依赖性作用。 OFQ的抗伤害感受作用在雄性和OVX动物中呈剂量依赖性,并被ORL1受体选择性拮抗剂UFP-101([Nphe1,Arg14,Lys15] N / OFQ(1-13)-NH2)可逆地拮抗。有趣的是,OFQ对男性进行性腺切除术(GDX)无效,而睾丸激素替代恢复了OFQ对GDX男性的镇痛作用。我们得出的结论是,OFQ产生了对脊髓伤害感受的性别特异性调控;雌激素与正常的雌激素水平循环并行地减弱女性的抗伤害感受,并且雄激素表达抗伤害感受需要睾丸激素;因此,雄性动物对OFQ的抗伤害感受作用的敏感性并不简单地归因于这些动物体内固有的雌激素水平低下。

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