Popadyuk Irina I, Markov Andrey V, Morozova Ekaterina A, Babich Valeriya O, Salomatina Oksana V, Logashenko Evgeniya B, Zenkova Marina A, Tolstikova Tat'yana G, Salakhutdinov Nariman F
N. N. Vorozhtsov Novosibirsk Institute of Organic Chemistry, Siberian Branch Russian Academy of Sciences, 9, Lavrent'ev Ave., Novosibirsk 630090, Russian Federation.
Institute of Chemical Biology and Fundamental Medicine, Siberian Branch Russian Academy of Sciences, 8, Lavrent'ev Ave., Novosibirsk 630090, Russian Federation.
Steroids. 2017 Nov;127:1-12. doi: 10.1016/j.steroids.2017.08.016. Epub 2017 Sep 5.
Novel deoxycholic acid (DCA) derivatives were stereoselectively synthesised with -OH and -CHSR moieties at the C-3 position, where R was a substituted aryl [2-aminophenyl (8) or 4-chlorophenyl (9)] or hetaryl [1-methylimidazolyl (5), 1,2,4-triazolyl (6), 5-amino-1,3,4-thiadiazolyl (7), pyridinyl (10) or pyrimidinyl (11)]. These compounds were prepared in good yields from the C-3β-epoxy derivative 2 in the epoxide ring-opening reaction by S-nucleophiles. These derivatives were evaluated for their in vitro anti-proliferation activity in a panel of tumor cell lines. Data showed that: (i) heterocycle-containing derivatives displayed higher cytotoxicity profiles than the parent molecule; (ii) heterocyclic substituents were more preferable than aryl moieties for enhancing anti-proliferation activity; (iii) the sensitivity of tumor cell lines to analysed compounds decreased in the following order: HuTu-80 (duodenal carcinoma)>KB-3-1 (cervical carcinoma)>HepG2 (hepatocellular carcinoma)>MH-22a (hepatoma); (iv) compounds 5, 6 and 11 exhibited a high cytotoxic selectivity index (HuTu-80: SI>7.7, 38.5 and 12.0, respectively). Compounds 2 and 6-8 markedly inhibited NO synthesis by interferon γ-induced macrophages. Screening for anti-inflammatory activity of these derivatives in vivo showed their high potency on histamine- (5, 10) and formalin- (2, 10, 11) induced paw edema models.
新型脱氧胆酸(DCA)衍生物在C-3位被立体选择性地合成,带有-OH和-CHSR部分,其中R为取代芳基[2-氨基苯基(8)或4-氯苯基(9)]或杂芳基[1-甲基咪唑基(5)、1,2,4-三唑基(6)、5-氨基-1,3,4-噻二唑基(7)、吡啶基(10)或嘧啶基(11)]。这些化合物通过S-亲核试剂在环氧化合物开环反应中由C-3β-环氧衍生物2以良好的产率制备。对这些衍生物在一组肿瘤细胞系中进行了体外抗增殖活性评估。数据表明:(i)含杂环的衍生物比母体分子表现出更高的细胞毒性谱;(ii)杂环取代基比芳基部分更有利于增强抗增殖活性;(iii)肿瘤细胞系对所分析化合物的敏感性按以下顺序降低:HuTu-80(十二指肠癌)>KB-3-1(宫颈癌)>HepG2(肝细胞癌)>MH-22a(肝癌);(iv)化合物5、6和11表现出高细胞毒性选择性指数(HuTu-80:SI分别>7.7、38.5和12.0)。化合物2和6-8显著抑制干扰素γ诱导的巨噬细胞产生NO。对这些衍生物的体内抗炎活性筛选表明它们对组胺-(5、10)和福尔马林-(2、10、11)诱导的爪肿胀模型具有高效力。