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一类新型非甾体芳香酶抑制剂:色酮和呫吨酮衍生物的设计与合成以及对细胞色素P450酶芳香酶和17α-羟化酶/C17,20裂解酶的抑制作用

A new class of nonsteroidal aromatase inhibitors: design and synthesis of chromone and xanthone derivatives and inhibition of the P450 enzymes aromatase and 17 alpha-hydroxylase/C17,20-lyase.

作者信息

Recanatini M, Bisi A, Cavalli A, Belluti F, Gobbi S, Rampa A, Valenti P, Palzer M, Palusczak A, Hartmann R W

机构信息

Department of Pharmaceutical Sciences, University of Bologna, Via Belmeloro 6, I-40126 Bologna, Italy.

出版信息

J Med Chem. 2001 Mar 1;44(5):672-80. doi: 10.1021/jm000955s.

DOI:10.1021/jm000955s
PMID:11262078
Abstract

Aromatase (P450arom) is a target of pharmacological interest for the treatment of breast cancer. In this paper, we report the design, synthesis, and in vitro biological evaluation of a series of new (di)benzopyranone-based inhibitors of this enzyme. The design of the new compounds was guided by a CoMFA model previously developed for a series of nonsteroidal aromatase inhibitors. Both the chromone and the xanthone nuclei were taken as molecular skeletons, and the functions supposed to be critical for binding to the aromatase active site - a heterocyclic ring (imidazole or 1,3,4-triazole) linked to the aromatic moiety by a methylene unit and an H-bond accepting function (CN, NO(2), Br) located on the aromatic ring at a suitable distance from the heterocyclic nitrogen carrying the lone pair--were attached to them. The chromone, xanthone, and flavone derivatives were prepared by conventional synthetic methods from the appropriate methyl analogues. Aromatase inhibitory activities were determined by the method of Thompson and Siiteri, using human placental microsomes and [1 beta,2 beta-(3)H]testosterone as the labeled substrate. All the compounds were also tested on 17 alpha-hydroxylase/C17,20-lyase (P450 17), an enzyme of therapeutic interest for the treatment of prostatic diseases. The goal to find new potent inhibitors of aromatase was reached with the xanthone derivatives 22d,e (IC(50) values 43 and 40 nM, respectively), which exceeded the potency of the known reference drug fadrozole and also showed high selectivity with respect to P450 17. Moreover, compounds 22g-i based on the same xanthonic nucleus showed fairly high potency as P450 17 inhibitors (IC(50) values 220, 130, and 42 nM, respectively). Thus, they might be new leads for the development of drug candidates for androgen-dependent diseases.

摘要

芳香酶(P450arom)是治疗乳腺癌的一个具有药理学研究价值的靶点。在本文中,我们报道了一系列基于新的(二)苯并吡喃酮的该酶抑制剂的设计、合成及体外生物学评价。新化合物的设计以先前为一系列非甾体芳香酶抑制剂建立的比较分子场分析(CoMFA)模型为指导。色酮和呫吨酮核均被用作分子骨架,并且将那些被认为对于与芳香酶活性位点结合至关重要的官能团——一个通过亚甲基单元与芳环相连的杂环(咪唑或1,3,4-三唑)以及一个位于芳环上、与带有孤对电子的杂环氮原子距离合适的氢键接受官能团(CN、NO₂、Br)——连接到它们上面。色酮、呫吨酮和黄酮衍生物通过常规合成方法由相应的甲基类似物制备。芳香酶抑制活性采用Thompson和Siiteri的方法测定,使用人胎盘微粒体和[1β,2β-(³H)]睾酮作为标记底物。所有化合物还针对17α-羟化酶/C17,20-裂解酶(P450 17)进行了测试,该酶是治疗前列腺疾病的一个具有治疗研究价值的酶。呫吨酮衍生物22d、e达到了寻找新型高效芳香酶抑制剂的目标(IC₅₀值分别为43和40 nM),其效力超过了已知的参考药物法倔唑,并且相对于P450 17也表现出高选择性。此外,基于相同呫吨酮核的化合物22g - i作为P450 17抑制剂表现出相当高的效力(IC₅₀值分别为220、130和42 nM)。因此,它们可能是开发雄激素依赖性疾病候选药物的新先导化合物。

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