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3-环烷基取代的3-(4-氨基苯基)哌啶-2,6-二酮的合成及芳香酶抑制作用

Synthesis and aromatase inhibition of 3-cycloalkyl-substituted 3-(4-aminophenyl)piperidine-2,6-diones.

作者信息

Hartmann R W, Batzl C, Pongratz T M, Mannschreck A

机构信息

Fachrichtung 12.1 Pharmazeutische Chemie, Universität des Saarlandes, FRG.

出版信息

J Med Chem. 1992 Jun 12;35(12):2210-4. doi: 10.1021/jm00090a010.

Abstract

The synthesis of 3-cycloalkyl-substituted 3-(4-aminophenyl)piperidine-2,6-diones is described [cyclopentyl (1), cyclohexyl (2)]. The enantiomers of 2 were separated either by using HPLC on optically active sorbent or by crystallization of the brucine salt of the phthalamic acid of 2. The absolute configuration of the (+)- and (-)-enantiomers of 2 were assigned as S and R, respectively, by comparing the CD spectra to those of the enantiomers of aminoglutethimide (AG, 3-(4-aminophenyl)-3-ethylpiperidine-2,6-dione). The compounds were tested in vitro for inhibition of human placental aromatase, the cytochrome P450-dependent enzyme which is responsible for the conversion of androgens to estrogens. Compounds 1 and 2 inhibited aromatase by 50% at 1.2 and 0.3 microM, respectively (IC50 AG = 37 microM). According to the findings with AG, the (+)-enantiomer of 2 was responsible for the inhibitory activity, being a 240-fold more potent aromatase inhibitor in vitro than racemic AG. On the other hand, (+)-2 displayed a strongly reduced inhibition of desmolase (cholesterol side-chain cleavage enzyme) compared to AG (relative activity = 0.3). Thus (+)-2 is of interest as a potential drug for the treatment of estrogen-dependent diseases, e.g. mammary tumors.

摘要

描述了3-环烷基取代的3-(4-氨基苯基)哌啶-2,6-二酮的合成[环戊基(1),环己基(2)]。2的对映体可通过在光学活性吸附剂上进行高效液相色谱分离,或通过2的邻苯二甲酰亚胺酸的马钱子碱盐结晶来分离。通过将2的(+)-和(-)-对映体的圆二色光谱与氨鲁米特(AG,3-(4-氨基苯基)-3-乙基哌啶-2,6-二酮)的对映体的光谱进行比较,分别将2的(+)-和(-)-对映体的绝对构型指定为S和R。对这些化合物进行了体外测试,以检测其对人胎盘芳香化酶的抑制作用,该酶是一种细胞色素P450依赖性酶,负责将雄激素转化为雌激素。化合物1和2分别在1.2和0.3微摩尔浓度下抑制芳香化酶50%(AG的IC50 = 37微摩尔)。根据对AG的研究结果,2的(+)-对映体具有抑制活性,在体外是外消旋AG的240倍强效芳香化酶抑制剂。另一方面,与AG相比,(+)-2对碳链裂解酶(胆固醇侧链裂解酶)的抑制作用大大降低(相对活性 = 0.3)。因此,(+)-2作为治疗雌激素依赖性疾病(如乳腺肿瘤)的潜在药物具有研究价值。

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