Marrazzo Agostino, Prezzavento Orazio, Pappalardo Maria S, Bousquet Ennio, Iadanza Manuela, Pike Victor W, Ronsisvalle Giuseppe
Department of Pharmaceutical Sciences, University of Catania, Catana, Italy.
Farmaco. 2002 Jan;57(1):45-53. doi: 10.1016/s0014-827x(01)01170-3.
Selective ligands for either sigma1 (sigma1) or sigma2 binding sites are potentially useful for gaining a better understanding of the physiological functions of these proteins. Moreover, potent and selective homochiral sigma1 and sigma2 binding site ligands represent leads to potential radioligands for tumour imaging with positron emission tomography (PET). On the basis of their structural similarity to previous leads, new (+)- and (-)-cis-2-[(1-adamantylamino)-methyl]-1-phenylcyclopropane derivatives were synthesised and their binding affinities for sigma1 and sigma2 binding sites were determined. Each enantiomer showed high affinity for both sigma1 and sigma2 binding sites, but only (-)-cis-methyl-2-[[1-adamantyl(methyl)amino]methyl]-1-phenylcyclopropane-carboxylate, (-)-4, showed appreciable selectivity for binding to sigma1 versus sigma2 sites. The enantiomers of cis-(2-[[1-adamantyl(methyl)amino]methyl]-1-phenylcyclopropyl)methanol, 6, expressed the highest affinity for sigma1 and sigma2 binding sites. Ligands (-)-4, (+)-6 and (-)-6 might be rapidly labelled in their N-methyl groups by methylation of the N-desmethyl analogues with [11C]iodomethane to provide prospective radioligands for PET. The N-desmethyl analogues, which are also high affinity ligands, were prepared and shown to undergo satisfactory methylation with iodomethane.
针对西格玛1(σ1)或西格玛2结合位点的选择性配体,对于更好地理解这些蛋白质的生理功能可能具有重要意义。此外,强效且选择性的同手性σ1和σ2结合位点配体有望成为正电子发射断层扫描(PET)肿瘤成像的潜在放射性配体。基于它们与先前先导化合物的结构相似性,合成了新的(+)-和(-)-顺式-2-[(1-金刚烷基氨基)-甲基]-1-苯基环丙烷衍生物,并测定了它们对σ1和σ2结合位点的结合亲和力。每种对映体对σ1和σ2结合位点均表现出高亲和力,但只有(-)-顺式-甲基-2-[[1-金刚烷基(甲基)氨基]甲基]-1-苯基环丙烷-羧酸盐,即(-)-4,对σ1位点的结合相对于σ2位点表现出明显的选择性。顺式-(2-[[1-金刚烷基(甲基)氨基]甲基]-1-苯基环丙基)甲醇,即6的对映体,对σ1和σ2结合位点表现出最高的亲和力。配体(-)-4、(+)-6和(-)-6的N-甲基基团可能会通过用[11C]碘甲烷对N-去甲基类似物进行甲基化而快速标记,从而为PET提供潜在的放射性配体。制备了同样是高亲和力配体的N-去甲基类似物,并证明它们能与碘甲烷进行令人满意的甲基化反应。