Pingaew Ratchanok, Mandi Prasit, Prachayasittikul Veda, Prachayasittikul Supaluk, Ruchirawat Somsak, Prachayasittikul Virapong
Department of Chemistry, Faculty of Science, Srinakharinwirot University, Bangkok 10110, Thailand.
Department of Community Medical Technology, Faculty of Medical Technology, Mahidol University, Bangkok 10700, Thailand.
Eur J Med Chem. 2018 Jan 1;143:1604-1615. doi: 10.1016/j.ejmech.2017.10.057. Epub 2017 Oct 20.
Thirty four of indoles bearing sulfonamides (11-44) were synthesized and evaluated for their anti-aromatase activities. Interestingly, all indole derivatives inhibited the aromatase with IC range of 0.7-15.3 μM. Indoles (27-36) exerted higher aromatase inhibitory activity than that of ketoconazole. The phenoxy analogs 28 and 34 with methoxy group were shown to be the most potent compounds with sub-micromolar IC values (i.e., 0.7 and 0.8 μM, respectively) without affecting to the normal cell line. Molecular docking demonstrated that the indoles 28, 30 and 34 could occupy the same binding site on the aromatase pocket and share several binding residues with those of the natural substrate (androstenedione), which suggested the competitive binding could be the mode of inhibition of the compounds. The most potent analog 28 could mimic H-bond interactions of the natural androstenedione with MET374 and ASP309 residues on the aromatase. QSAR model also revealed that the para-phenoxy indole (28) affords the higher value of electronegativity descriptor MATS6e as well as the higher inhibitory activity compared with that of the ortho-phenoxy compound (34). The study highlighted a series of promising indoles to be potentially developed as novel aromatase inhibitors for therapeutics.
合成了34种含磺酰胺的吲哚类化合物(11 - 44),并对其抗芳香化酶活性进行了评估。有趣的是,所有吲哚衍生物均能抑制芳香化酶,其IC值范围为0.7 - 15.3 μM。吲哚类化合物(27 - 36)的芳香化酶抑制活性高于酮康唑。具有甲氧基的苯氧基类似物28和34被证明是最有效的化合物,其IC值为亚微摩尔级(即分别为0.7和0.8 μM),且不影响正常细胞系。分子对接表明,吲哚类化合物28、30和34可占据芳香化酶口袋中的相同结合位点,并与天然底物(雄烯二酮)共享多个结合残基,这表明竞争性结合可能是这些化合物的抑制模式。最有效的类似物28可模拟天然雄烯二酮与芳香化酶上MET374和ASP309残基的氢键相互作用。QSAR模型还显示,对苯氧基吲哚(28)的电负性描述符MATS6e值较高,与邻苯氧基化合物(34)相比,其抑制活性也较高。该研究突出了一系列有前景的吲哚类化合物,有望开发成为新型治疗用芳香化酶抑制剂。