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κ-阿片类药物和σ-阿片类药物在大鼠大脑中的结合。

The binding of kappa- and sigma-opiates in rat brain.

作者信息

Wolozin B L, Nishimura S, Pasternak G W

出版信息

J Neurosci. 1982 Jun;2(6):708-13. doi: 10.1523/JNEUROSCI.02-06-00708.1982.

Abstract

Detailed displacements of [3H]dihydromorphine by ketocyclazocine and SKF 10,047, [3H]ethylketocyclazocine by SKF 10,047, and [3H]SKF 10,047 by ketocyclazocine are all multiphasic, suggesting multiple binding sites. After treating brain tissue in vitro with naloxazone, all displacements lose the initial inhibition of 3H-ligand binding by low concentrations of unlabeled drugs. Together with Scatchard analysis of saturation experiments, these studies suggest a common site which binds mu-, kappa, and sigma-opiates and enkephalins equally well and with highest affinity (KD less than 1 nM). The ability of unlabeled drugs to displace the low affinity binding of [3H]dihydromorphine (KD = 3 nM), [3H]ethylketocyclazocine (KD = 4 nM), [3H]SKF 10,047 (KD = 6 nM), and D-Ala2-D-Leu5-[3H]enkephalin (KD = 5 nM) remaining after treating tissue with naloxazone demonstrates unique pharmacological profiles for each. These results suggest the existence of distinct binding sites for kappa- and sigma-opiates which differ from those sites which selectively bind morphine (mu) and enkephalin (delta).

摘要

酮环唑新和SKF 10,047对[3H]二氢吗啡的详细置换、SKF 10,047对[3H]乙基酮环唑新的置换以及酮环唑新对[3H]SKF 10,047的置换均为多相性,提示存在多个结合位点。用纳洛唑酮体外处理脑组织后,所有置换均失去了低浓度未标记药物对3H配体结合的初始抑制作用。结合饱和实验的Scatchard分析,这些研究提示存在一个共同位点,该位点对μ、κ和σ阿片类药物及脑啡肽具有同等良好且最高亲和力(解离常数KD小于1 nM)的结合能力。用纳洛唑酮处理组织后,未标记药物对[3H]二氢吗啡(KD = 3 nM)、[3H]乙基酮环唑新(KD = 4 nM)、[3H]SKF 10,047(KD = 6 nM)和D-Ala2-D-Leu5-[3H]脑啡肽(KD = 5 nM)低亲和力结合的置换能力显示出每种药物独特的药理学特征。这些结果提示存在与选择性结合吗啡(μ)和脑啡肽(δ)的位点不同的κ和σ阿片类药物的独特结合位点。

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