Chan W K, Huang F C, Morrissette M M, Warus J D, Moriarty K J, Galemmo R A, Dankulich W D, Poli G, Sutherland C A
Department of Medicinal Chemistry, Rhône-Poulenc Rorer Central Research, Collegeville, Pennsylvania 19426, USA.
J Med Chem. 1996 Sep 13;39(19):3756-68. doi: 10.1021/jm950699x.
N-Methyl-N-phenethylphenylacetamide has been reported to be a key binding domain to LTB4 receptors. Here we describe the synthesis and structure-activity relationship (SAR) studies of two new series of LTB4 receptor antagonists in which the phenyl ring of this receptor binding domain is replaced with indole and naphthalene, respectively. Results of these studies indicate that, in addition to the 2-[methyl(2-phenethyl)amino]-2-oxoethyl moiety, the presence of an acid group and a lipophilic side chain, as well as the spatial relationship of these three functions, is crucial for high binding affinity with LTB4 receptors. Our SAR studies also reveal that an arenecarboxylic acid, or an enoic acid in which the carboxyl group is conjugated with the central ring, is the preferred polar group. The lipophilic side chain of the naphthyl series was found to tolerate minor variations, ranging from a phenylmethoxy group to phenyl and alkyloxy groups. The most active compounds are 2-ethyl-3-[1-[2-[methyl(2-phenethyl) amino]-2-oxoethyl]-5-(phenylmethoxy)indol-3-yl]propenoic+ ++ acid (4g) of the indolyl series and 4-[2-[methyl(2-phenethyl)amino]-2-oxoethyl]-8-(phenylmethoxy )-2-naphthalenecarboxylic acid (2a) or the naphthyl series, with IC50 of 8 and 4.7 nM respectively, in the receptor binding assay using intact human neutrophils.
据报道,N-甲基-N-苯乙基苯乙酰胺是白三烯B4(LTB4)受体的关键结合域。在此,我们描述了两个新系列LTB4受体拮抗剂的合成及构效关系(SAR)研究,其中该受体结合域的苯环分别被吲哚和萘取代。这些研究结果表明,除了2-[甲基(2-苯乙基)氨基]-2-氧代乙基部分外,酸性基团和亲脂性侧链的存在以及这三种官能团的空间关系对于与LTB4受体的高结合亲和力至关重要。我们的SAR研究还表明,芳羧酸或羧基与中心环共轭的烯酸是优选的极性基团。发现萘基系列的亲脂性侧链能够耐受从苯甲氧基到苯基和烷氧基的微小变化。活性最高的化合物是吲哚基系列的2-乙基-3-[1-[2-[甲基(2-苯乙基)氨基]-2-氧代乙基]-5-(苯甲氧基)吲哚-3-基]丙烯酸(4g)以及萘基系列的4-[2-[甲基(2-苯乙基)氨基]-2-氧代乙基]-8-(苯甲氧基)-2-萘甲酸(2a),在使用完整人中性粒细胞的受体结合试验中,其IC50分别为8 nM和4.7 nM。