Department of Chemistry, Faculty of Science, Girl's, Al-Azhar University, PO box 11754, Yousef Abbas Str, Nasr City, Cairo, Egypt.
Eur J Med Chem. 2011 Sep;46(9):4566-72. doi: 10.1016/j.ejmech.2011.07.035. Epub 2011 Jul 27.
4-acetamide Pyrazolone 2 was synthesized by acetylation of 4-amino antipyrine 1 in excellent yield. 4-acetamide pyrazolone 2 was exploited as a starting material for the syntheses of hitherto unknown different types of new heterocyclic compounds incorporating the antipyrine moiety which expect highly biological activity against various microorganisms. Thus, Claisen condensation of 4-acetamide pyrazolone 2 with diethyl oxalate have been utility to afford new 4-oxaloacetyl antipyrine 3, which upon hydrazinolysis of the ester function to obtain the acetohydrazide derivative 18 which used as starting material to synthesize 1,2,4-triazol 19 and hydrazone 20 derivatives. 4-aminothiophene carboxylate derivatives 6, 7 were synthesized by utility of Gewald reaction. On the other hand, Michael type addition of the enolate ion of acetyl functions in acetamide pyrazolone 2 to the activated double bond in arylidenemalonoester to furnish pyrane derivative 9 was done. Finally, 4-acetamide pyrazolone 2 was treated with aromatic substituted aldehyde to exhibit thiophenacrylamide derivative 10. Compound 6 gave characteristic reaction for enaminonitriles, thus, the behavior of o-aminoester of 4-aminothiophene carboxylate derivative 6 toward electrophilic reagent, one carbon donars, amide and acid was also investigated to afford the correspondence thiophene derivatives 11,12,13,15 and 16. In addition, treatment of carboxamide derivative 16 with thionyl chloride afforded the thienothiadiazine derivative 17. The characterization of all synthesized compounds was done by elemental analysis and spectral studies. Moreover, all the synthesized compounds were tested against antimicrobial activities by the disc diffusion method, which exhibited higher promising biological activities.
4-乙酰氨基吡唑啉酮 2 是通过 4-氨基安替比林 1 的乙酰化反应以优异的收率合成的。4-乙酰氨基吡唑啉酮 2 被用作合成迄今为止未知的不同类型的新杂环化合物的起始原料,这些化合物含有安替比林部分,预计对各种微生物具有高度的生物活性。因此,4-乙酰氨基吡唑啉酮 2 与草酸二乙酯的克莱森缩合反应得到了新的 4-氧代乙酰基安替比林 3,其酯基的肼解得到乙酰基腙衍生物 18,该衍生物可作为合成 1,2,4-三唑 19 和腙 20 衍生物的起始原料。4-氨基噻吩羧酸酯衍生物 6、7 是通过 Gewald 反应合成的。另一方面,通过乙酰基吡唑啉酮 2 中的烯醇负离子与芳基亚甲基丙二腈的活化双键的迈克尔加成反应得到吡喃衍生物 9。最后,4-乙酰氨基吡唑啉酮 2 与取代的芳醛反应得到噻吩丙烯酰胺衍生物 10。化合物 6 表现出对烯胺腈的特征反应,因此,4-氨基噻吩羧酸酯衍生物 6 的邻氨基酯对亲电试剂、一碳给体、酰胺和酸的行为也进行了研究,得到了相应的噻吩衍生物 11、12、13、15 和 16。此外,将羧酸酰胺衍生物 16 与亚硫酰氯反应得到噻吩并噻二嗪衍生物 17。所有合成化合物的特性均通过元素分析和光谱研究进行了描述。此外,所有合成化合物都通过圆盘扩散法进行了抗菌活性测试,表现出更高的有前途的生物活性。