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纳洛酮和纳曲吲哚对脊髓阿片受体激动剂的剂量依赖性拮抗作用:大鼠中δ-阿片受体亚型的更多证据。

Dose-dependent antagonism of spinal opioid receptor agonists by naloxone and naltrindole: additional evidence for delta-opioid receptor subtypes in the rat.

作者信息

Tiseo P J, Yaksh T L

机构信息

University of California, Department of Anesthesiology, San Diego, La Jolla 92093.

出版信息

Eur J Pharmacol. 1993 May 12;236(1):89-96. doi: 10.1016/0014-2999(93)90230-f.

Abstract

Intrathecally administered mu-opioid (morphine; DAMGO ([D-Ala2,N-MePhe4,Gly5-ol]enkephalin)) and delta-opioid (DPDPE ([D-Pen2,D-Pen5] enkephalin); DADLE ([D-Ala2,D-Leu5]enkephalin)) receptor preferring agonists were systematically challenged with the competitive opiate antagonists naloxone or naltrindole in the rat. Naloxone produced a dose-dependent reduction in agonist effect with the intrathecal IC50 being similar for all agonists (2.1-5.4 micrograms). In contrast, the naltrindole antagonist profile was (IC50 in micrograms) DPDPE (4.0); morphine (23.5); DADLE (> 30) and DAMGO (> 30). Three points are emphasized: (1) antagonism of DPDPE and not DAMGO by naltrindole suggests two distinct opioid sites; (2) a similar potency for naloxone against these agonists suggests that the agonists may act upon spinal sites for which naloxone has comparable affinity or that they may act upon separate sites which are functionally coupled and that the action of naloxone on one or the other site is responsible for the antagonism; and (3) given the modest cross-tolerance between DADLE and mu agonists, the failure of naltrindole to antagonize DADLE suggests that in the rat this peptide acts through a delta site different from that acted upon by DPDPE.

摘要

在大鼠中,鞘内注射偏爱μ阿片受体(吗啡;DAMGO([D - Ala2,N - MePhe4,Gly5 - ol]脑啡肽))和δ阿片受体(DPDPE([D - Pen2,D - Pen5]脑啡肽);DADLE([D - Ala2,D - Leu5]脑啡肽))的激动剂,并系统地用竞争性阿片拮抗剂纳洛酮或纳曲吲哚进行挑战。纳洛酮使激动剂效应呈剂量依赖性降低,所有激动剂的鞘内半数抑制浓度(IC50)相似(2.1 - 5.4微克)。相比之下,纳曲吲哚的拮抗剂特征(IC50,单位为微克)为:DPDPE(4.0);吗啡(23.5);DADLE(> 30)和DAMGO(> 30)。强调三点:(1)纳曲吲哚对DPDPE而非DAMGO的拮抗作用表明存在两个不同的阿片位点;(2)纳洛酮对这些激动剂具有相似的效力,这表明激动剂可能作用于纳洛酮具有相当亲和力的脊髓位点,或者它们可能作用于功能耦合的不同位点,并且纳洛酮在一个或另一个位点的作用负责拮抗作用;(3)鉴于DADLE与μ激动剂之间存在适度的交叉耐受性,纳曲吲哚未能拮抗DADLE表明在大鼠中该肽通过与DPDPE作用的δ位点不同的δ位点发挥作用。

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