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对σ2结合位点具有亚纳摩尔亲和力和选择性的西格玛配体。2. 螺环连接的苯并呋喃、异苯并呋喃和苯并吡喃哌啶。

Sigma ligands with subnanomolar affinity and preference for the sigma 2 binding site. 2. Spiro-joined benzofuran, isobenzofuran, and benzopyran piperidines.

作者信息

Moltzen E K, Perregaard J, Meier E

机构信息

H. Lundbeck A/S, Ottiliavej 9, Copenhagen-Valby, Denmark.

出版信息

J Med Chem. 1995 May 26;38(11):2009-17. doi: 10.1021/jm00011a020.

Abstract

Spiro[isobenzofuran-1(3H),4'-piperidines] and the corresponding benzofuran and benzopyran derivatives have been synthesized and evaluated as sigma ligands. The compounds are related to Lu 28-179 (1'-[4-[1-(4-fluorophenyl)-1H-indol-3-yl]-1- butyl]spiro[isobenzofuran-1(3H),4'-piperidine]) that has been demonstrated to be a selective sigma 2 ligand with affinity in the subnanomolar range. The object of the study was to determine the structural factors governing sigma 1/sigma 2 affinity and selectivity within this class of compounds. The N-substituent in spiro[isobenzofuran-1(3H),4'-piperidines] is highly important, both for affinity and selectivity. Spiropiperidines with no or small N-substituents (H, Me, Et) exert very low affinity for both sigma 1 and sigma 2 binding sites (IC50(sigma 1, sigma 2) > 100 nM), whereas medium-sized substituents (e.g., Pr, Bu, Ph(CH2)2) result in potent, but unselective compounds (IC50(sigma 1, sigma 2) = 2-5 nM). Increasing the chain length and the lipophilicity of the N-substituent result in compounds in which high affinity for sigma 2 binding sites is retained and with selectivity for sigma 2 vs sigma 1 binding sites (e.g., 4-cyclohexyl-1-butyl: IC50-(sigma 1) = 1.5 nM, IC50(sigma 2) = 0.07 nM). Introduction of substituents in the benzene ring of the spiro[isobenzofuran-1(3H),4'-piperidine] ring system of Lu 28-179 mainly affects affinity for sigma 1 binding sites. Compounds with substituents (F, CF3) in the 4- or 7-position of the isobenzofuran display high affinity for sigma 2 binding sites (IC50(sigma 2) = 0.5-2 nM) and very low affinity for sigma 1 binding sites (IC50(sigma 1) > 100 nM). Compounds with substituents (F, CF3, Me) in the 5- or 6-position of the isobenzofuran exert increased affinity for sigma 1 binding sites (IC50(sigma 1) = 5-30 nM, IC50(sigma 2) = 0.3-7 nM), thus rendering unselective compounds. Exchanging the isobenzofuran moiety of Lu 28-179 with thioisobenzofuran, benzofuran, or benzopyran also has a pronounced effect on both affinity and selectivity for sigma binding sites. The position of the oxygen atom and the position of the spiroconnection with the 4-position of the piperidine ring were varied, and only compounds in which both the benzene ring and the heteroatom are attached directly to the piperidine ring retain high affinity and selectivity for sigma 2 binding sites (e.g., 3,4-dihydro-1'-[4-[1-(4-fluorophenyl)-1H-indol-3-yl]-1- butyl]spiro[1H-2-benzopyran-1,4'-piperidine]: IC50(sigma 1) = 53 nM, IC50(sigma 2) = 0.9 nM).(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

螺[异苯并呋喃-1(3H),4'-哌啶]以及相应的苯并呋喃和苯并吡喃衍生物已被合成并作为σ配体进行评估。这些化合物与Lu 28-179(1'-[4-[1-(4-氟苯基)-1H-吲哚-3-基]-1-丁基]螺[异苯并呋喃-1(3H),4'-哌啶])相关,后者已被证明是一种选择性σ2配体,亲和力处于亚纳摩尔范围。本研究的目的是确定在这类化合物中决定σ1/σ2亲和力和选择性的结构因素。螺[异苯并呋喃-1(3H),4'-哌啶]中的N-取代基对亲和力和选择性都非常重要。没有或只有小的N-取代基(H、Me、Et)的螺哌啶对σ1和σ2结合位点的亲和力都非常低(IC50(σ1, σ2) > 100 nM),而中等大小的取代基(如Pr、Bu、Ph(CH2)2)会产生强效但无选择性的化合物(IC50(σ1, σ2) = 2 - 5 nM)。增加N-取代基的链长和亲脂性会得到对σ2结合位点保留高亲和力且对σ2相对于σ1结合位点具有选择性的化合物(例如,4-环己基-1-丁基:IC50-(σ1) = 1.5 nM,IC50(σ2) = 0.07 nM)。在Lu 28-179的螺[异苯并呋喃-1(3H),4'-哌啶]环系统的苯环中引入取代基主要影响对σ1结合位点的亲和力。在异苯并呋喃的4-或7-位带有取代基(F、CF3)的化合物对σ2结合位点具有高亲和力(IC50(σ2) = 0.5 - 2 nM),而对σ1结合位点的亲和力非常低(IC50(σ1) > 100 nM)。在异苯并呋喃的5-或6-位带有取代基(F、CF3、Me)的化合物对σ1结合位点的亲和力增加(IC50(σ1) = 5 - 30 nM,IC50(σ2) = 0.3 - 7 nM),从而产生无选择性的化合物。将Lu 28-179的异苯并呋喃部分换成硫代异苯并呋喃、苯并呋喃或苯并吡喃对σ结合位点的亲和力和选择性也有显著影响。改变氧原子的位置以及与哌啶环4-位的螺连接位置,只有苯环和杂原子都直接连接到哌啶环的化合物对σ2结合位点保留高亲和力和选择性(例如,3,4-二氢-1'-[4-[1-(4-氟苯基)-1H-吲哚-3-基]-1-丁基]螺[1H-2-苯并吡喃-1,4'-哌啶]:IC50(σ1) = 53 nM,IC50(σ2) = 0.9 nM)。(摘要截断于400字)

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