Department of Basic Medical Sciences, Zhengzhou University, Zhengzhou 450001, China.
Department of Pharmaceutical Sciences, Institute of Drug Discovery & Development, Key Laboratory of Advanced Drug Preparation Technologies (Ministry of Education), Zhengzhou University, Zhengzhou 450001, China.
Molecules. 2020 Nov 25;25(23):5530. doi: 10.3390/molecules25235530.
Chalcone is a common scaffold found in many biologically active compounds. The chalcone scaffold was also frequently utilized to design novel anticancer agents with potent biological efficacy. Aiming to continue the research of effective chalcone derivatives to treat cancers with potent anticancer activity, fourteen amino chalcone derivatives were designed and synthesized. The antiproliferative activity of amino chalcone derivatives was studied in vitro and 5-Fu as a control group. Some of the compounds showed moderate to good activity against three human cancer cells (MGC-803, HCT-116 and MCF-7 cells) and compound 13e displayed the best antiproliferative activity against MGC-803 cells, HCT-116 cells and MCF-7 cells with IC values of 1.52 μM (MGC-803), 1.83 μM (HCT-116) and 2.54 μM (MCF-7), respectively which was more potent than the positive control (5-Fu). Further mechanism studies were explored. The results of cell colony formatting assay suggested compound 10e inhibited the colony formation of MGC-803 cells. DAPI fluorescent staining and flow cytometry assay showed compound 13e induced MGC-803 cells apoptosis. Western blotting experiment indicated compound 13e induced cell apoptosis via the extrinsic/intrinsic apoptosis pathway in MGC-803 cells. Therefore, compound 13e might be a valuable lead compound as antiproliferative agents and amino chalcone derivatives worth further effort to improve amino chalcone derivatives' potency.
查耳酮是许多具有生物活性的化合物中常见的支架。查耳酮支架也经常被用于设计具有强大生物功效的新型抗癌药物。为了继续研究有效的查耳酮衍生物,以治疗具有强大抗癌活性的癌症,设计并合成了 14 种氨基查耳酮衍生物。在体外研究了氨基查耳酮衍生物的增殖活性,并以 5-Fu 作为对照组。一些化合物对三种人癌细胞(MGC-803、HCT-116 和 MCF-7 细胞)表现出中等至良好的活性,化合物 13e 对 MGC-803 细胞、HCT-116 细胞和 MCF-7 细胞的增殖活性最好,IC 值分别为 1.52 μM(MGC-803)、1.83 μM(HCT-116)和 2.54 μM(MCF-7),比阳性对照(5-Fu)更有效。进一步探索了机制研究。细胞集落形成实验的结果表明,化合物 10e 抑制了 MGC-803 细胞的集落形成。DAPI 荧光染色和流式细胞术分析表明,化合物 13e 诱导 MGC-803 细胞凋亡。Western blot 实验表明,化合物 13e 通过 MGC-803 细胞的外源性/内源性凋亡途径诱导细胞凋亡。因此,化合物 13e 可能是一种有价值的先导化合物,作为增殖抑制剂,氨基查耳酮衍生物值得进一步努力提高其功效。