首页> 外文期刊>Journal of Molecular Structure >Design, synthesis, DFT, molecular modelling studies and biological evaluation of novel 3-substituted (E)-5-(arylidene)-1-methyl-2-thioxoimidazolidin-4-ones with potent cytotoxic activities against breast MCF-7, liver HepG2, and lung A549
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Design, synthesis, DFT, molecular modelling studies and biological evaluation of novel 3-substituted (E)-5-(arylidene)-1-methyl-2-thioxoimidazolidin-4-ones with potent cytotoxic activities against breast MCF-7, liver HepG2, and lung A549

机译:新型3取代(E)-5-(亚亚胺)-1-甲基-2-硫代咪唑胺-4-乳腺MCF-7,肝脏Hepg2,肝脏Hepg2新的三种替换(e)-5-(亚烷基)-1-甲基-2-硫代咪唑酯蛋白-4-甲基-1-甲基-2-硫代昔唑胺-4-甲基咪唑蛋白-4-肝脏 和肺A549

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We report the synthesis of novel 3-substituted (E)-5-(arylidene)-1-methyl-2-thioxoimidazolidin-4-ones 6-11, and their biological evaluation. Based on structural and pharmacophore analyses of known inhibitors such as fluorouracil (5-FU), we envisioned interesting 2-thioxoimidazolidin-4-one compounds, 3-substituted (E)-5-(arylidene)-1-methyl-2-thioxoimidazolidin-4-ones 6-11 that would be expected to well match the structural features in 5-FU. Efficient synthesis of twenty-four target compounds 6-11 were achieved through the synthetic pathway of 5 -> 6 -> 7 -> 10 11, established after consideration of several plausible synthetic pathways. A series of (E)-5-(arylidene)-1-methyl-2-thioxoimidazolidinoneones 5a-d were synthesized via the reaction of 1-methyl-2-thioxoimidazolidin-4-one (3), which in turn was prepared via the reaction of N-methyl glycine (2) with NH4SCN, followed by Knoevenagel condensation. N-alkylation and N-glycosylation were carried via the reaction of 5a-d with alkyl bromides and aglycopyranosyl bromides 9a,b under alkaline and glycoside conditions, respectively. The N-alkylated and N-glycosylated structures have been selected for the products. Conformational analysis has been studied by homonuclear and heteronuclear two-dimensional NMR methods (DQF-COSY, HMQC, and HMBC). The N site of alkylation and glycosylation were determined from the H-1, C-13 heteronuclear multiple-quantum coherence (HMQC) experiments. Molecular modelling and DFT calculations using B3LYP/6-31+G (d, p) level were performed to study the electronic and geometric properties obtained from the stable structure of the investigated compounds. A good correlation between the quantum chemical descriptors and experimental observations was found. The synthesized derivatives exhibited good binding interactions towards the cyclin-dependent kinase 2, especially compound 11b, which have better key interactions than the co-crystallized ligand. Additionally, it had potent cytotoxic activities with IC50 = 4.30, 5.53, 9.43 against MCF-7, HepG2, and A549, respectively. (C) 2020 Elsevier B.V. All rights reserved.
机译:我们报道了新型3-取代(E)-5-(亚芳基)-1-甲基-2-硫代咪唑烷-4-酮6-11的合成及其生物学评价。基于对氟尿嘧啶(5-FU)等已知抑制剂的结构和药效团分析,我们设想了有趣的2-硫氧基咪唑烷-4-酮化合物,3-取代(E)-5-(芳基)-1-甲基-2-硫氧基咪唑烷-4-酮6-11,有望与5-FU的结构特征完全匹配。在考虑了几种可能的合成途径后,通过5->6->7->10 11的合成途径,实现了24个目标化合物6-11的高效合成。通过1-甲基-2-硫氧基咪唑烷-4-酮(3)的反应合成了一系列(E)-5-(芳基)-1-甲基-2-硫氧基咪唑烷酮5a-d,该酮又通过N-甲基甘氨酸(2)与NH4SCN反应,然后通过Knoevenagel缩合制备。N-烷基化和N-糖基化分别在碱性和糖苷条件下通过5a-d与烷基溴化物和苷基吡喃基溴化物9a、b的反应进行。对产物选择了N-烷基化和N-糖基化结构。构象分析已经通过同核和异核二维核磁共振方法(DQF-COSY、HMQC和HMBC)进行了研究。通过H-1、C-13异核多量子相干(HMQC)实验确定了烷基化和糖基化的N位。采用B3LYP/6-31+G(d,p)水平进行分子模拟和DFT计算,以研究从所研究化合物的稳定结构获得的电子和几何性质。发现量子化学描述符与实验观测之间存在良好的相关性。合成的衍生物对细胞周期蛋白依赖性激酶2,尤其是化合物11b表现出良好的结合相互作用,后者比共结晶配体具有更好的键相互作用。此外,它对MCF-7、HepG2和A549的IC50分别为4.30、5.53和9.43,具有强大的细胞毒性活性。(C) 2020爱思唯尔B.V.版权所有。

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