Maiti Arup, Cuendet Muriel, Croy Vicki L, Endringer Denise C, Pezzuto John M, Cushman Mark
Department of Medicinal Chemistry and Molecular Pharmacology, School of Pharmacy and Pharmaceutical Sciences, Purdue University, West Lafayette, Indiana 47907, USA.
J Med Chem. 2007 Jun 14;50(12):2799-806. doi: 10.1021/jm070109i. Epub 2007 May 19.
An efficient and economical synthesis of the naturally occurring aromatase inhibitor abyssinone II was performed. The synthesis features an optimized aromatic prenylation reaction in which an arylcopper intermediate is reacted with prenyl bromide to afford a key intermediate that was converted to a prenylated aromatic aldehyde. Condensation of the aldehyde with an o-hydroxyacetophenone under Claisen-Schmidt conditions afforded a chalcone that was deprotected and cyclized in the presence of sodium acetate in refluxing ethanol to afford (+/-)-abyssinone II. The synthesis proved to be versatile enough to provide an array of abyssinone II derivatives that were evaluated as aromatase inhibitors. Methylation of the 4'-hydroxyl group of (+/-)-abyssinone II resulted in a significant increase in aromatase inhibitory activity, and further smaller increases in activity resulted from the methylation of the 7-hydroxyl group and removal of the prenyl side chain. As a result of these structural changes, the most active flavanone of the series was 20 times more potent than (+/-)-abyssinone II (IC50 40.95 microM).
实现了天然存在的芳香酶抑制剂阿比西酮II的高效经济合成。该合成的特点是优化的芳基异戊烯基化反应,其中芳基铜中间体与异戊烯基溴反应得到关键中间体,该中间体再转化为异戊烯基化的芳香醛。在克莱森-施密特条件下,醛与邻羟基苯乙酮缩合得到查耳酮,查耳酮在回流乙醇中于醋酸钠存在下脱保护并环化,得到(±)-阿比西酮II。该合成方法足够通用,能够提供一系列作为芳香酶抑制剂进行评估的阿比西酮II衍生物。(±)-阿比西酮II的4'-羟基甲基化导致芳香酶抑制活性显著增加,7-羟基甲基化和异戊烯基侧链去除则使活性进一步小幅增加。由于这些结构变化,该系列中活性最高的黄烷酮比(±)-阿比西酮II的效力高20倍(IC50为40.95 microM)。