Department of Chemistry, Banasthali Vidyapith, Banasthali, India.
Department of Pharmacy, Banasthali Vidyapith, Banasthali, India.
Org Biomol Chem. 2024 Aug 14;22(32):6520-6531. doi: 10.1039/d4ob00828f.
A base-promoted palladium-catalyzed cascade reaction is described to access trifluoromethylated dipyridodiazepinone derivatives in an aqueous system (1,4-dioxane-HO). This methodology uses simple chemicals, has a broad substrate scope, is waste minimized (-factor = 0.3-0.9) and produces 11-CF-tethered dipyridiodiazepinone derivatives in good to excellent yields. All the synthesized analogues were preliminarily examined for antibacterial activity against and and compared to the reference drugs. Furthermore, inhibition of the peptide deformylase enzyme and antibiofilm studies were performed and compound 5i exhibited the best inhibitory effect among the other analogues. Furthermore, these analogues were analysed molecular docking, molecular simulation, drug-likeness, physicochemical and ADMET studies. Results from biological evaluation and computational studies revealed that compound 5i could be used as a lead molecular structure for the development of novel antibacterial agents. In conclusion, the green metrics evaluation of the defined protocol provides advantages in the synthesis of biologically active compounds.
一种基于钯催化的级联反应被描述为在水相体系(1,4-二氧六环-HO)中构建三氟甲基化的二吡啶并二氮杂䓬酮衍生物。该方法使用简单的化学物质,具有广泛的底物范围,废物最小化(-factor = 0.3-0.9),并以良好到优秀的收率得到 11-CF 键合的二吡啶并二氮杂䓬酮衍生物。所有合成的类似物都初步进行了抗 和 的抗菌活性测试,并与参考药物进行了比较。此外,还进行了肽脱甲酰基酶抑制和抗生物膜研究,结果表明,在其他类似物中,化合物 5i 表现出最好的抑制效果。此外,还对这些类似物进行了分子对接、分子模拟、药物相似性、理化性质和 ADMET 研究。生物学评价和计算研究的结果表明,化合物 5i 可以作为开发新型抗菌药物的先导分子结构。总之,所定义方案的绿色度量评估在生物活性化合物的合成中具有优势。