Mamolo Maria Grazia, Zampieri Daniele, Zanette Caterina, Florio Chiara, Collina Simona, Urbano Mariangela, Azzolina Ornella, Vio Luciano
Department of Pharmaceutical Sciences, University of Trieste, P.ale Europa 1, 34127 Trieste, Italy.
Eur J Med Chem. 2008 Oct;43(10):2073-81. doi: 10.1016/j.ejmech.2007.09.012. Epub 2007 Sep 26.
In the attempt to develop new sigma ligands we synthesized a series of N-benzyl-3-[1-(4-fluorophenyl)-1H-indol-3-yl]-N-methylpropan-1-amines and N-benzyl-4-[1-(4-fluorophenyl)-1H-indol-3-yl]-N-methylbutan-1-amines variously substituted on the phenyl ring. The displacement percentages of [3H]-DTG and [3H]-(+)-pentazocine determined in rat liver homogenates by these compounds at the fixed 100 nM concentration have been determined as a preliminary evaluation of their sigma1 and sigma2 affinity, respectively. The results suggested that the phenyl substituents may positively modulate, in comparison with the unsubstituted compound, the ability to displace [3H]-DTG from sigma2 sites, whereas the same phenyl substituents reduced the displacement percentages of [3H]-(+)-pentazocine from sigma1 sites. Some of these compounds were selected for radioligand binding assays. Compounds with a butylene intermediate chain displayed the greatest binding affinity for sigma2 over sigma1 receptors. The butylene derivative with 2,4-dimethyl substitution on the phenyl ring showed the greatest sigma2 affinity (sigma2Ki=5.9 nM) and an appreciable sigma2 over sigma1 selectivity (sigma1Ki/sigma2Ki=22). The obtained results suggest that a butylene chain separating the indole moiety from variously substituted benzylamino groups may be required to their interaction with a hypothetical secondary sigma2 binding site.
为了开发新的西格玛配体,我们合成了一系列在苯环上有不同取代基的N-苄基-3-[1-(4-氟苯基)-1H-吲哚-3-基]-N-甲基丙-1-胺和N-苄基-4-[1-(4-氟苯基)-1H-吲哚-3-基]-N-甲基丁-1-胺。在固定浓度100 nM下,通过这些化合物在大鼠肝脏匀浆中测定的[3H]-DTG和[3H]-(+)-喷他佐辛的取代百分比,分别作为它们对sigma1和sigma2亲和力的初步评估。结果表明,与未取代的化合物相比,苯环上的取代基可能正向调节从sigma2位点取代[3H]-DTG的能力,而相同的苯环取代基降低了从sigma1位点取代[3H]-(+)-喷他佐辛的取代百分比。其中一些化合物被选用于放射性配体结合测定。具有丁烯中间链的化合物对sigma2受体的结合亲和力比对sigma1受体的结合亲和力大。在苯环上有2,4-二甲基取代的丁烯衍生物表现出最大的sigma2亲和力(sigma2Ki = 5.9 nM)和明显的sigma2对sigma1的选择性(sigma1Ki/sigma2Ki = 22)。所得结果表明,将吲哚部分与不同取代的苄氨基基团分开的丁烯链可能是它们与假设的二级sigma2结合位点相互作用所必需的。