Advanced Catalysis laboratory, Vellore Institute of Technology (VIT), 632014, Vellore, India.
Chem Biodivers. 2023 Aug;20(8):e202300573. doi: 10.1002/cbdv.202300573. Epub 2023 Jul 20.
An efficient metal-free approach for site selective C-N coupling reaction of benzo[d]isoxazole and 2H-chromene derivatives has been designed and developed against AchE. This nitrogen containing organo-base promoted methodology, which is both practical and environmentally friendly, provides an easy and suitable pathway for synthesizing Benzisoxazole-Chromene (BC) possessing poly heteroaryl moieties. The synthesized BC derivatives 4 a-n was docked into the active sites of AChE to obtain more perception into the binding modes of the compounds. Out of them, compound 4 a and 4 l displayed potent activity and high selectivity against the AChE inhibition. Final docking results indicates that compound 4 l showed the lowest binding energy of -11.2260 kcal/mol with AChE. The synthesized BC analogs would be potential candidates for promoting suitable studies in medicinal chemistry research.
针对乙酰胆碱酯酶(AchE),我们设计并开发了一种高效的无金属方法,用于苯并[d]异恶唑和 2H-色烯衍生物的位点选择性 C-N 偶联反应。这种含氮有机碱促进的方法既实用又环保,为合成具有多杂芳基部分的苯并异恶唑-色烯(BC)提供了一种简单而合适的途径。将合成的 BC 衍生物 4a-n 对接入 AChE 的活性位点,以更深入地了解化合物的结合模式。其中,化合物 4a 和 4l 对 AChE 抑制表现出很强的活性和高选择性。最终的对接结果表明,化合物 4l 与 AChE 的结合能最低,为-11.2260 kcal/mol。合成的 BC 类似物可能是促进药物化学研究中合适研究的潜在候选物。