Elkanzi Nadia A A, Ali Ali M, Abdelaziz Mahmoud A, Alsirhani Alaa Muqbil
Department of Chemistry, College of Science, Jouf University, 72341, Sakaka, Aljouf, Saudi Arabia.
Department of Chemistry, Faculty of Science, Sohag University, Sohag, 82524, Egypt.
Mol Divers. 2024 Dec 7. doi: 10.1007/s11030-024-11073-7.
In this paper, we present a green application for the synthesis of novel pyridine derivatives 4a-f via one-pot, multicomponent reaction (MCRs) of some aromatic aldehydes 1a-f with malononitrile (2) and N-(4-acetylphenyl)-4-methylbenzenesulfonamide (3) in the presence of ammonium acetate using ultrasonic irradiation (U.S) in an aqueous solvent HO:EtOH (2:1). The structures of all synthesized pyridines 4a-f were confirmed via elemental analysis and different spectroscopic techniques. This application has many advantages such as avoiding hazardous solvents, excellent yields, inexpensive, simple application, in addition to obtain pure compounds. The anti-inflammatory activity of the newly compounds was examined with the reference drug Ibuprofen. The obtained results showed that most derivatives are promising anti-inflammatory activates. Moreover, compound 4b exhibits the most anti-inflammatory activity with a percentage of inhibition with 51.67% compared with Ibuprofen 53.96%. Furthermore, the newly compounds were studied in their molecular docking simulations against the enzyme Human Cyclooxygenase-2, with Tolfenamic Acid as a reference ligand (PDB ID: 5IKT). Compound 4b demonstrated a robust binding affinity with the target protein 5ikt, evidenced by its binding affinity score of - 11.16 kcal/mol, which is the highest among the studied compounds.
在本文中,我们展示了一种绿色应用,即在水溶剂HO:EtOH(2:1)中,使用超声辐射(U.S.),通过一些芳香醛1a - f与丙二腈(2)和N -(4 - 乙酰苯基)- 4 - 甲基苯磺酰胺(3)在乙酸铵存在下的一锅多组分反应(MCRs),合成新型吡啶衍生物4a - f。所有合成的吡啶4a - f的结构均通过元素分析和不同的光谱技术得到证实。该应用具有许多优点,如避免使用有害溶剂、产率优异、成本低廉、应用简单,此外还能获得纯净的化合物。用参比药物布洛芬检测了新化合物的抗炎活性。所得结果表明,大多数衍生物具有良好的抗炎活性。此外,化合物4b表现出最强的抗炎活性,其抑制率为51.67%,而布洛芬的抑制率为53.96%。此外,还对新化合物与人类环氧化酶 - 2进行了分子对接模拟研究,以托芬那酸作为参比配体(PDB ID:5IKT)。化合物4b与目标蛋白5ikt表现出较强的结合亲和力,其结合亲和力评分为 - 11.16 kcal/mol,这在研究的化合物中是最高的。