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Synthesis biological evaluations and molecular modelling studies of novel indolin-2-ones designing as FGFR inhibitors

机译:设计为FGFR抑制剂的新型吲哚-2-酮的合成生物学评价和分子模型研究

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摘要

A series of novel 3,5-disubstituted indolin-2-ones were designed and synthesized as selective FGFR inhibitors. In the design process of 3,5-disubstituted indolin-2-ones for FGFRs, molecular docking studies were performed to generate and optimize novel compounds which have FGFR inhibitory potency, theoretically. enzyme inhibitory and selectivity profiles of the synthesized compounds, and their cytotoxicity against NIH-3T3 cells were evaluated. According to enzyme inhibition assay, compound (FGFR1-4; IC  = 19.82; 5.95; 1419; 37150 nM), compound (FGFR1-4; IC  = 1890; ; 6.50; 18590 nM) and compound (FGFR1-4; IC  = 6.99; 1022; 17090; 8993 nM) have displayed best inhibitory potency against FGFR2, FGFR3 and FGFR1, respectively. The studied compounds have displayed low affinity to FGFR4 in comparison with other isoforms. Molecular docking study data were used to determine the binding orientations of the synthesized compounds inside FGFRs in accordance with enzyme inhibition assay data. Molecular dynamics simulations and free energy calculations were performed to determine stability, binding modes and dynamics behaviors of compound , and inside FGFR-2, FGFR-3 and FGFR-1, respectively. The compounds bearing aromatic groups at the C5 position of indolin-2-one could be lead compounds for the development of more effective and selective FGFR1-3 inhibitors.
机译:设计和合成了一系列新颖的3,5-二取代的吲哚-2-酮作为选择性FGFR抑制剂。在用于FGFR的3,5-二取代的吲哚-2-酮的设计过程中,进行了分子对接研究,从理论上产生并优化了具有FGFR抑制能力的新型化合物。评估了合成化合物的酶抑制和选择性特征,以及它们对NIH-3T3细胞的细胞毒性。根据酶抑制试验,化合物(FGFR1-4; IC = 19.82; 5.95; 1419; 37150nM),化合物(FGFR1-4; IC = 1890 ;; 6.50; 18590nM)和化合物(FGFR1-4; IC = 6.99)。 ; 1022; 17090; 8993nM)分别显示出对FGFR2,FGFR3和FGFR1的最佳抑制效力。与其他同工型相比,研究的化合物对FGFR4的亲和力低。分子对接研究数据用于根据酶抑制试验数据确定FGFR内部合成化合物的结合方向。进行了分子动力学模拟和自由能计算,以确定化合物的稳定性,结合模式和动力学行为,以及分别在FGFR-2,FGFR-3和FGFR-1内部。在吲哚-2-一的C5位带有芳族基团的化合物可能是开发更有效和更具选择性的FGFR1-3抑制剂的先导化合物。

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