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设计、合成、分子模拟及新型喹喔啉衍生物的抗增殖活性评价,作为潜在的 DNA 嵌入剂和拓扑异构酶 II 抑制剂。

Design, synthesis, molecular modeling and anti-proliferative evaluation of novel quinoxaline derivatives as potential DNA intercalators and topoisomerase II inhibitors.

机构信息

Medicinal Chemistry Department, Faculty of Pharmacy (Boys), Al-Azhar University, Cairo, 11884, Egypt.

Pharmacognosy Department, Faculty of Pharmacy (Boys), Al-Azhar University, Cairo, 11884, Egypt.

出版信息

Eur J Med Chem. 2018 Jul 15;155:117-134. doi: 10.1016/j.ejmech.2018.06.004. Epub 2018 Jun 4.

Abstract

New series of [1,2,4]triazolo [4,3-a]quinoxaline and bis([1,2,4]triazolo)[4,3-a:3',4'-c]quinoxaline derivatives have been designed, synthesized and biologically evaluated for their cytotoxic activities against three tumor cell lines (HePG-2, Hep-2 and Caco-2). Compounds 16, 21, 25 and 25 exhibited the highest activities against the examined cell lines with IC values ranging from 0.29 to 0.90 μM comparable to that of doxorubicin (IC ranging from 0.51 to 0.73 μM). The most active members were further evaluated for their topoisomerase II (Topo II) inhibitory activities and DNA intercalating affinities as potential mechanisms for their anti-proliferative activities. Interestingly, the results of Topo II inhibition and DNA binding assays were consistent with that of the cytotoxicity data, where the most potent anti-proliferative derivatives exhibited good Topo II inhibitory activities and DNA binding affinities, comparable to that of doxorubicin. Moreover, the most active compound 25 caused cell cycle arrest at G2/M phase and induced apoptosis in Caco-2 cells. In addition, Furthermore, molecular docking studies were performed for the novel compounds against DNA-Topo II complex to investigate their binding patterns. Based on these studies, it was concluded that DNA binding and/or Topo II inhibition may contribute to the observed cytotoxicity of the synthesized compounds.

摘要

已经设计、合成了一系列新的[1,2,4]三唑并[4,3-a]喹喔啉和双[1,2,4]三唑并[4,3-a:3',4'-c]喹喔啉衍生物,并对它们的细胞毒性活性进行了评估,针对三种肿瘤细胞系(HePG-2、Hep-2 和 Caco-2)。化合物 16、21、25 和 25 对所检查的细胞系表现出最高的活性,IC 值范围为 0.29 至 0.90 μM,与阿霉素(IC 值范围为 0.51 至 0.73 μM)相当。最活跃的成员进一步评估了它们的拓扑异构酶 II(Topo II)抑制活性和 DNA 插入亲和力,作为其抗增殖活性的潜在机制。有趣的是,Topo II 抑制和 DNA 结合测定的结果与细胞毒性数据一致,其中最有效的抗增殖衍生物表现出良好的 Topo II 抑制活性和 DNA 结合亲和力,与阿霉素相当。此外,最活跃的化合物 25 导致 Caco-2 细胞周期停滞在 G2/M 期,并诱导细胞凋亡。此外,还对新型化合物与 DNA-Topo II 复合物进行了分子对接研究,以研究它们的结合模式。基于这些研究,可以得出结论,DNA 结合和/或 Topo II 抑制可能有助于观察到合成化合物的细胞毒性。

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