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N-正烷基烟碱类似物,一类新型烟碱受体拮抗剂:与α4β2*和α7*神经元烟碱受体的相互作用。

N-n-alkylnicotinium analogs, a novel class of nicotinic receptor antagonists: interaction with alpha4beta2* and alpha7* neuronal nicotinic receptors.

作者信息

Wilkins Lincoln H, Grinevich Vladimir P, Ayers Joshua T, Crooks Peter A, Dwoskin Linda P

机构信息

College of Pharmacy, University of Kentucky, Lexington, Kentucky 40536-0082, USA.

出版信息

J Pharmacol Exp Ther. 2003 Jan;304(1):400-10. doi: 10.1124/jpet.102.043349.

Abstract

The current study demonstrates that N-n-alkylnicotinium analogs with increasing n-alkyl chain lengths from 1 to 12 carbons have varying affinity (Ki = 90 nM-20 microM) for S-(-)-[3H]nicotine binding sites in rat striatal membranes. A linear relationship was observed such that increasing n-alkyl chain length provided increased affinity for the alpha4beta2* nicotinic acetylcholine receptor (nAChR) subtype, with the exception of N-n-octylnicotinium iodide (NONI). The most potent analog was N-n-decylnicotinium iodide (NDNI; Ki = 90 nM). In contrast, none of the analogs in this series exhibited high affinity for the [3H]methyllycaconitine binding site, thus indicating low affinity for the alpha7* nAChR. The C8 analog, NONI, had low affinity for S-(-)-[3H]nicotine binding sites but was a potent inhibitor of S-(-)-nicotine-evoked [3H]dopamine (DA) overflow from superfused striatal slices (IC50 = 0.62 microM), thereby demonstrating selectivity for the nAChR subtype mediating S-(-)-nicotine-evoked [3H]DA overflow (alpha3alpha6beta2* nAChRs). Importantly, the N-n-alkylnicotinium analog with highest affinity for the alpha4beta2* subtype, NDNI, lacked the ability to inhibit S-(-)-nicotine-evoked [3H]DA overflow and, thus, appears to be selective for alpha4beta2* nAChRs. Furthermore, the present study demonstrates that the interaction of these analogs with the alpha4beta2* subtype is via a competitive mechanism. Thus, selectivity for the alpha4beta2* subtype combined with competitive interaction with the S-(-)-nicotine binding site indicates that NDNI is an excellent candidate for studying the structural topography of alpha4beta2* agonist recognition binding sites, for identifying the antagonist pharmacophore on the alpha4beta2* nAChR, and for defining the role of this subtype in physiological function and pathological disease states.

摘要

当前研究表明,正烷基链长度从1个碳增加到12个碳的N-正烷基烟碱类似物对大鼠纹状体膜中S-(-)-[3H]尼古丁结合位点具有不同的亲和力(Ki = 90 nM - 20 μM)。观察到一种线性关系,即随着正烷基链长度增加,对α4β2烟碱型乙酰胆碱受体(nAChR)亚型的亲和力增加,但N-正辛基碘化烟碱(NONI)除外。最有效的类似物是N-正癸基碘化烟碱(NDNI;Ki = 90 nM)。相比之下,该系列中的类似物均未对[3H]甲基lycaconitine结合位点表现出高亲和力,因此表明对α7 nAChR的亲和力较低。C8类似物NONI对S-(-)-[3H]尼古丁结合位点的亲和力较低,但却是超融合纹状体切片中S-(-)-尼古丁诱发的[3H]多巴胺(DA)溢出的有效抑制剂(IC50 = 0.62 μM),从而证明了对介导S-(-)-尼古丁诱发的[3H]DA溢出的nAChR亚型(α3α6β2* nAChRs)具有选择性。重要的是,对α4β2亚型具有最高亲和力的N-正烷基烟碱类似物NDNI缺乏抑制S-(-)-尼古丁诱发的[3H]DA溢出的能力,因此似乎对α4β2 nAChRs具有选择性。此外,本研究表明这些类似物与α4β2亚型的相互作用是通过竞争机制。因此,对α4β2亚型的选择性以及与S-(-)-尼古丁结合位点的竞争性相互作用表明,NDNI是研究α4β2激动剂识别结合位点的结构拓扑、鉴定α4β2 nAChR上的拮抗剂药效团以及确定该亚型在生理功能和病理疾病状态中的作用的极佳候选物。

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