Felman S W, Jirkovsky I, Memoli K A, Borella L, Wells C, Russell J, Ward J
Wyeth-Ayerst Research, Princeton, New Jersey 08543-8000.
J Med Chem. 1992 Apr 3;35(7):1183-90. doi: 10.1021/jm00085a003.
In order to investigate new antiulcer agents, spizofurone 1 (AG-629) was fragmented and reassembled to generate 5-phenyl-2,2-dimethyl-3(2H)-furanone (bullatenone, 2). Because of the antiulcer activity of 2,5-phenyl-substituted 2,2-dimethyl-3(2H)-furanones (3-6) were made and shown to have poor activity. Insertion of an ethenyl link between the furanone and phenyl rings gave 5-(2-phenylethenyl)-2,2-dimethyl-3(2H)- furanone (7). This compound had better activity than 2. Compounds 8-41 were synthesized to evaluate the SAR in 5-(2-ethenyl substituted)-3(2H)-furanones. Electron-withdrawing substituents on the aromatic ring (8, 10, 19, and 20) gave 2-3-fold higher activity. Further increases in the activity were found when the phenyl ring was replaced by heterocyclic nuclei. Compounds that contained a thiophene (29), pyridine (24-26), or quinoline ring (32) had the best activity. Replacement of the methyl group on the furanone ring with a phenyl (34) or p-fluorophenyl (40) substituent in the 2-pyridine series gave compounds with activity that ranked with the best obtained in this study. The best compounds from the above SAR studies were evaluated in the ethanol-necrosis model for duration of cytoprotection action. Compounds 19, 24, and 29, which had the best duration of action, were tested with AG-629 in the acidified aspirin and indomethacin-induced lesion models. Only compound 24 had equivalent activity with AG-629 in both models.
为了研究新型抗溃疡药物,对螺佐呋酮1(AG - 629)进行拆分和重新组合,以生成5 - 苯基 - 2,2 - 二甲基 - 3(2H)-呋喃酮(布拉特烯酮,2)。由于2具有抗溃疡活性,因此制备了5 - 苯基取代的2,2 - 二甲基 - 3(2H)-呋喃酮(3 - 6),但结果显示其活性较差。在呋喃酮和苯环之间插入乙烯基连接得到5-(2 - 苯乙烯基)-2,2 - 二甲基 - 3(2H)-呋喃酮(7)。该化合物的活性比2更好。合成了化合物8 - 41,以评估5-(2 - 乙烯基取代)-3(2H)-呋喃酮的构效关系。芳环上的吸电子取代基(8、10、19和20)使活性提高了2 - 3倍。当苯环被杂环核取代时,活性进一步增加。含有噻吩(29)、吡啶(24 - 26)或喹啉环(32)的化合物活性最佳。在2 - 吡啶系列中,用苯基(34)或对氟苯基(40)取代呋喃酮环上的甲基,得到的化合物活性与本研究中获得的最佳活性相当。对上述构效关系研究中得到的最佳化合物在乙醇坏死模型中进行细胞保护作用持续时间的评估。作用持续时间最佳的化合物19、24和29,与AG - 629一起在酸化阿司匹林和吲哚美辛诱导的损伤模型中进行测试。在两个模型中,只有化合物24与AG - 629具有相当的活性。