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δ 型 GABA 受体亚型的变构调节剂在小鼠吗啡镇痛耐受和戒断中显示出治疗效果。

Allosteric modulators of the δ GABA receptor subtype demonstrate a therapeutic effect in morphine-antinociceptive tolerance and withdrawal in mice.

机构信息

Department of Pharmaceutical Sciences, University of California Irvine, Irvine, CA, 92697-4625, USA; Department of Anesthesiology, School of Medicine, University of California, Irvine, CA, 92697, USA.

Department of Pharmaceutical Sciences, University of California Irvine, Irvine, CA, 92697-4625, USA.

出版信息

Neuropharmacology. 2022 Nov 15;219:109221. doi: 10.1016/j.neuropharm.2022.109221. Epub 2022 Sep 7.

Abstract

The present study evaluated the effects of compounds targeting extrasynaptic δ subunit-containing γ-aminobutyric acid type A receptors (δ*-GABARs) to interrogate the role of tonic inhibition in the development of antinociceptive tolerance caused by repeated morphine administration. We investigated the effect of subchronic or acute treatment with non-steroidal positive allosteric modulators (PAMs) of δ*-GABARs, such as 2-261, on the morphine-antinociceptive tolerance. Mice were treated twice daily with morphine for 9 days and antinociception was measured using the hot water tail immersion test. Co-treatment with 2-261 and morphine prevented morphine-antinociceptive tolerance and acute administration of 2-261 on day 9 was sufficient to reverse the tolerance. Other compounds with activity at δ*-GABARs also reversed morphine tolerance, whereas an enaminone that lacked activity at δ*-GABARs did not. Acute administration of 2-261 did not cause an additive or synergistic antinociceptive effect when combined with an acute submaximal dose of morphine. We then used Cre/LoxP recombination to generate GABA δ-subunit knockout mice to corroborate the pharmacological results. Observations of male δ-knockout mice demonstrated that the δ*-GABARs was necessary for 2-261 modulation of both analgesic tolerance and somatic withdrawal symptoms produced by subchronic morphine. While female mice still benefited from the positive effects of 2-261, the δ-subunit was not necessary for these effects, highlighting a distinction of the different pathways that could have implications for some of the sex-related differences seen in human opioid-induced outcomes. Consequently, subtype-specific allosteric modulators of GABARs may warrant further investigation as pharmacological targets to manage tolerance and withdrawal from opioids.

摘要

本研究评估了靶向 extrasynaptic δ 亚基包含 γ-氨基丁酸 A 型受体(δ*-GABARs)的化合物的作用,以探究在反复给予吗啡后产生的镇痛耐受中,紧张性抑制的作用。我们研究了非甾体正变构调节剂(PAMs)δ*-GABARs,如 2-261,的亚慢性或急性治疗对吗啡镇痛耐受的影响。小鼠每天两次接受吗啡治疗 9 天,使用热水尾巴浸入试验测量镇痛作用。2-261 与吗啡共同治疗可预防吗啡镇痛耐受,并且在第 9 天急性给予 2-261 足以逆转耐受。其他在 δ*-GABARs 上具有活性的化合物也逆转了吗啡耐受,而在 δ*-GABARs 上缺乏活性的烯胺酮则没有。急性给予 2-261 与急性亚最大剂量吗啡联合使用时,不会引起相加或协同的镇痛作用。然后,我们使用 Cre/LoxP 重组生成 GABA δ 亚单位敲除小鼠,以证实药理学结果。对雄性 δ 敲除小鼠的观察表明,δ*-GABARs 是 2-261 调节慢性吗啡产生的镇痛耐受和躯体戒断症状所必需的。虽然雌性小鼠仍受益于 2-261 的积极作用,但 δ 亚基对于这些作用并非必需,这突出了不同途径的区别,这可能对人类阿片类药物引起的结果中一些性别差异具有影响。因此,GABARs 的亚型特异性变构调节剂可能值得进一步研究,作为管理阿片类药物耐受和戒断的药理学靶点。

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