Department of Chemistry, Vel Tech Multi Tech Dr. Rangarajan Dr. Sakunthala Engineering College, Avadi, Chennai, India.
Department of Biochemistry, Dwaraka Doss Goverdhan Doss Vaishnav College, Chennai, Tamilnadu, 600106, India.
Sci Rep. 2023 Mar 17;13(1):4453. doi: 10.1038/s41598-023-31476-0.
Under conventional and silica-supported Muffle furnace methods, water-soluble substituted trimeric triaryl pyridinium cations with various inorganic counter anions are synthesized. The solvent-free synthesis method is superior to the conventional method in terms of non-toxicity, quicker reaction times, ease of workup, and higher yields. Trimeric substituted pyridinium salts acted as excellent catalytic responses for the preparation of Gem-bisamide derivatives compared with available literature. To evaluate the molecular docking, benzyl/4-nitrobenzyl substituted triaryl pyridinium salt compounds with VEGFR-2 kinase were used with H-bonds, π-π stacking, salt bridges, and hydrophobic contacts. The results showed that the VEGFR-2 kinase protein had the most potent inhibitory activity. Intriguingly, the compound [NBTAPy]PF had a strongly binds to VEGFR-2 kinase and controlled its activity in cancer treatment and prevention.
在常规和二氧化硅负载马弗炉方法下,合成了具有各种无机抗衡阴离子的水溶性取代三聚三芳基吡啶翁阳离子。与常规方法相比,无溶剂合成方法具有无毒、反应时间更快、后处理更容易和产率更高的优点。与现有文献相比,三聚取代吡啶翁盐作为制备 Gem-双酰胺衍生物的优良催化响应。为了评估分子对接,使用具有 VEGFR-2 激酶的苄基/4-硝基苄基取代三芳基吡啶翁盐化合物进行氢键、π-π 堆积、盐桥和疏水接触。结果表明,VEGFR-2 激酶蛋白具有最强的抑制活性。有趣的是,化合物[NBTAPy]PF 强烈结合 VEGFR-2 激酶并控制其在癌症治疗和预防中的活性。