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羟基乙基取代哌嗪的合成、药理学评价及与 σ1 受体相互作用分析。

Synthesis, pharmacological evaluation, and σ1 receptor interaction analysis of hydroxyethyl substituted piperazines.

机构信息

Institute of Pharmaceutical and Medicinal Chemistry, University of Münster , Corrensstraße 48, D-48149 Münster, Germany.

出版信息

J Med Chem. 2014 Apr 10;57(7):2884-94. doi: 10.1021/jm401707t. Epub 2014 Mar 27.

Abstract

Starting from (S)- or (R)-aspartate, three synthetic strategies were explored to prepare hydroxyethyl substituted piperazines with different substituents at the N-atoms. σ receptor affinity was recorded using receptor material from both animal and human origin. σ1 affinities determined with guinea pig brain and human RPMI 8226 tumor cell lines differed slightly but showed the same tendency. (S)-2-[4-(Cyclohexylmethyl)-1-(naphthalene-2-ylmethyl)piperazin-2-yl]ethanol (7c) revealed the highest affinity at human σ1 receptors (Ki = 6.8 nM). The potent σ1 receptor ligand 7c was able to inhibit selectively the growth of three human tumor cell lines with IC50 values in the low micromolar range. The reduced growth of the RPMI-8226 cell line was caused by apoptosis. The interaction of 7c with the σ1 receptor was analyzed in detail using the 3D homology model of the σ1 receptor. The calculated free binding energies of all hydroxyethylpiperazines nicely correlate with their recorded affinities toward the human σ1 receptor.

摘要

从 (S)-或 (R)-天冬氨酸出发,探索了三种合成策略来制备具有不同 N-原子取代基的羟乙基取代哌嗪。使用来自动物和人类来源的受体材料记录 σ 受体亲和力。使用豚鼠脑和人 RPMI 8226 肿瘤细胞系测定的 σ1 亲和力略有不同,但趋势相同。(S)-2-[4-(环己基甲基)-1-(萘-2-基甲基)哌嗪-2-基]乙醇(7c)在人 σ1 受体上显示出最高的亲和力(Ki = 6.8 nM)。强效的 σ1 受体配体 7c 能够选择性抑制三种人肿瘤细胞系的生长,IC50 值在低微摩尔范围内。RPMI-8226 细胞系生长的减少是由细胞凋亡引起的。使用 σ1 受体的 3D 同源模型详细分析了 7c 与 σ1 受体的相互作用。所有羟乙基哌嗪的计算自由结合能与其对人 σ1 受体的记录亲和力很好地相关。

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