Highly efficient construction of multi-substituted aminopyrazoles derivatives via iodine-mediated three-components reaction as potential anticancer agents

Zilin Gao, Wenbo Huang, Manli Liu, Yu Chen, Liqiao Shi, Zhigang Zhang, Fei Yang, Xiufang Cao, Kaimei Wang, Shaoyong Ke
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Abstract

As an important class of natural products, pyrazole alkaloids have a large number of applications in various aspects such as medicines and pesticides. Due to the special position of its amino group, 3-aminopyrazole is easy to form a hydrogen bond donor-acceptor-donor, and the hydrogen bond “zipper” structure enhances the binding ability of such compounds to receptors. This work provides a new one-pot three-components reaction for the efficient construction of multi-substituted aminopyrazoles derivatives via iodine-mediated cyclization in the presence of ethanol. After that, the potential mechanism of the reaction was explored based on the control transformation experimental and density functional theory (DFT) calculations. In addition, all obtained multi-substituted aminopyrazole derivatives were fully investigated for their application as potential anti-cancer agents, and some of which have been proved to exhibit excellent anti-cancer activity against A875, HepG2, and HL-7702 cell lines, and the possible structure-activity relationships also has been discussed based on the screening results. The kinase assay and molecular docking experimental indicate that this class of compounds may be a potential CDK1 inhibitors.
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通过碘介导的三组分反应高效构建多取代氨基吡唑衍生物作为潜在的抗癌药物
吡唑类生物碱作为一类重要的天然产物,在医药、农药等各个方面有着广泛的应用。由于其氨基的特殊位置,3-氨基吡唑容易形成给体-受体-给体氢键,氢键的“拉链”结构增强了这类化合物与受体的结合能力。本研究为在乙醇存在下通过碘介导环化高效构建多取代氨基吡唑衍生物提供了一种新的一锅三组分反应。在此基础上,通过控制变换实验和密度泛函理论(DFT)计算,探讨了反应的潜在机理。此外,对所获得的多取代氨基吡唑衍生物作为潜在抗癌药物的应用进行了充分的研究,其中一些衍生物对A875、HepG2和HL-7702细胞株具有良好的抗癌活性,并根据筛选结果对可能的构效关系进行了讨论。激酶分析和分子对接实验表明这类化合物可能是潜在的CDK1抑制剂。
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