Department of Chemistry, Sardar Patel University, Vallabh Vidyanagar 388120, Gujarat, India.
BioLab, Instituto Universitario de Bio-Orgánica Antonio González, CIBICAN, Universidad de La Laguna, Avda. Astrofísico Francisco Sánchez 2, 38206 La Laguna, Spain.
Bioorg Chem. 2019 May;86:137-150. doi: 10.1016/j.bioorg.2019.01.029. Epub 2019 Jan 19.
Herein our team explored a promising synthetic trail to Functionalized pyrazolodihydropyridine core using hydroxyl alkyl ammonium ionic liquid via one-pot fusion of 3-methyl-1-phenyl-1H-pyrazole-5-amine, different heterocyclic aldehydes and 1, 3-Cyclic diones. The aimed compounds were obtained by Domino-Knoevenagel condensation and Michael addition followed by cyclization. The reaction transformation involves the formation of two CC and one CN bond formation. The perspective of the present work is selectively approached to Functionalized pyrazolodihydropyridine core excluding other potential parallel reactions under environmentally benign reaction condition. The present protocol show features such as the low E-factor, ambiphilic behavior of ionic liquid during reaction transformation, scale-up to a multigram scale, reusability of the ionic liquid, mild reaction condition, and produce water as a byproduct. All newly derived compounds were evaluated for their in vitro biological activities. In preliminary biological studies compound, 4c showed better potency than the standard drug ampicillin against Gram-negative bacteria (E. coli); the compound 4i exhibited outstanding activity against S. aeruginosa which is far better than ampicillin, chloramphenicol, and ciprofloxacin. The compound 4m was found more potent against C. albicans, than that of griseofulvin and show equipotency to nystatin whereas, in preliminary antitubercular screening, compound 4o was exhibited more potency than rifampicin. Noteworthy compounds 4f and 4i were found most active in antiproliferative screening.
在这里,我们的团队探索了一种有前途的合成途径,使用羟基烷基铵离子液体,通过一锅法融合 3-甲基-1-苯基-1H-吡唑-5-胺、不同杂环醛和 1,3-环二酮,来合成功能化吡唑并二氢嘧啶核心。目标化合物通过 Domino-Knoevenagel 缩合和迈克尔加成反应,随后进行环化反应得到。反应转化涉及两个 CC 和一个 CN 键的形成。本工作的重点是选择性地合成功能化吡唑并二氢嘧啶核心,排除其他潜在的平行反应,在环境友好的反应条件下进行。本方案的特点是低 E 因子、离子液体在反应转化过程中的两性行为、放大到多克规模、离子液体的可重复使用性、温和的反应条件以及产生水作为副产物。所有新合成的化合物都进行了体外生物活性评价。在初步的生物研究中,化合物 4c 对革兰氏阴性菌(大肠杆菌)的活性比标准药物氨苄西林更好;化合物 4i 对铜绿假单胞菌的活性非常突出,优于氨苄西林、氯霉素和环丙沙星。化合物 4m 对白色念珠菌的活性比灰黄霉素更强,与制霉菌素相当,而在初步的抗结核筛选中,化合物 4o 比利福平更有效。值得注意的是,化合物 4f 和 4i 在抗增殖筛选中表现出最强的活性。