Islam Mohammad Shahidul, Al-Majid Abdullah Mohammed, Haukka Matti, Parveen Zahida, Ravaiz Nabeela, Wadood Abdul, Rehman Ashfaq Ur, Ríos-Gutiérrez Mar, Domingo Luis R, Barakat Assem
Department of Chemistry, College of Science, King Saud University, Riyadh, Saudi Arabia.
Department of Chemistry, University of Jyväskylä, Jyväskylä, Finland.
Chem Biol Drug Des. 2023 Nov;102(5):972-995. doi: 10.1111/cbdd.14299. Epub 2023 Aug 10.
A novel spirooxindole-pyrrolidine clubbed thiochromene and pyrazole motifs were synthesized by [3+2] cycloaddition (32CA) reactions in one step process starting from the ethylene-based thiochromene and pyrazole scaffolds with the secondary amino-acids and substituted isatins in high yield. The 32CA reaction of AY 10 with ethylene derivative 6 has also been studied with Molecular Electron Density Theory. The high nucleophilic character of AY 10, N = 4.39 eV, allows explaining that the most favorable TS-on is 13.9 kcal mol below the separated reagent. This 32CA, which takes place through a non-concerted one-step mechanism, presents a total ortho regio- and endo stereoselectivity, which is controlled by the formation of two intramolecular H O hydrogen bonds. The design of spirooxindole-pyrrolidines engrafted thiochromene and pyrazole was tested for alpha-amylase inhibition and show a high efficacy in nanoscale range of reactivity. The key interaction between the most active hybrids and the receptor was studied by molecular docking. The physiochemical properties of the designed spirooxindole-pyrrolidines were carried out by in silico ADMET prediction. The newly synthesized most potent hybrid could be considered as a lead compound for drug discovery development for type 2 diabetes mellitus (T2DM).
一种新型的螺环氧化吲哚 - 吡咯烷结合硫代色烯和吡唑基序通过[3 + 2]环加成(32CA)反应一步合成,该反应从基于乙烯的硫代色烯和吡唑支架开始,与仲氨基酸和取代的异吲哚酮反应,产率很高。还利用分子电子密度理论研究了AY 10与乙烯衍生物6的32CA反应。AY 10的高亲核性(N = 4.39 eV)可以解释最有利的过渡态比分离的试剂低13.9 kcal·mol。这种通过非协同一步机制发生的32CA反应具有完全的邻位区域选择性和内型立体选择性,这是由两个分子内H - O氢键的形成控制的。对接枝硫代色烯和吡唑的螺环氧化吲哚 - 吡咯烷进行了α - 淀粉酶抑制测试,并在纳米级反应范围内显示出高效性。通过分子对接研究了最具活性的杂化物与受体之间的关键相互作用。通过计算机辅助ADMET预测对设计的螺环氧化吲哚 - 吡咯烷的理化性质进行了研究。新合成的最有效的杂化物可被视为2型糖尿病(T2DM)药物发现开发的先导化合物。