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生物素缀合的抗癌硫代缩氨基脲及其铁(III)和铜(II)配合物的合成与生物评价。

Synthesis and biological evaluation of biotin-conjugated anticancer thiosemicarbazones and their iron(III) and copper(II) complexes.

机构信息

Institute of Inorganic Chemistry, Faculty of Chemistry, University of Vienna, Waehringer Str. 42, A-1090 Vienna, Austria.

Institute of Cancer Research and Comprehensive Cancer Center, Medical University of Vienna, Borschkeg. 8a, A-1090 Vienna, Austria.

出版信息

J Inorg Biochem. 2019 Jan;190:85-97. doi: 10.1016/j.jinorgbio.2018.10.006. Epub 2018 Oct 19.

Abstract

Triapine, the most prominent anticancer drug candidate from the substance class of thiosemicarbazones, was investigated in >30 clinical phase I and II studies. However, the results were rather disappointing against solid tumors, which can be explained (at least partially) due to inefficient delivery to the tumor site. Hence, we synthesized the first biotin-functionalized thiosemicarbazone derivatives in order to increase tumor specificity and accumulation. Additionally, for Triapine and one biotin conjugate the iron(III) and copper(II) complexes were prepared. Subsequently, the novel compounds were biologically evaluated on a cell line panel with different biotin uptake. The metal-free biotin-conjugated ligands showed comparable activity to the reference compound Triapine. However, astonishingly, the metal complexes of the biotinylated derivative showed strikingly decreased anticancer activity. To further analyze possible differences between the metal complexes, detailed physico- and electrochemical experiments were performed. However, neither lipophilicity or complex solution stability, nor the reduction potential or behavior in the presence of biologically relevant reducing agents showed strong variations between the biotinylated and non-biotinylated derivatives (only some differences in the reduction kinetics were observed). Nonetheless, the metal-free biotin-conjugate of Triapine revealed distinct activity in a colon cancer mouse model upon oral application comparable to Triapine. Therefore, this type of biotin-conjugated thiosemicarbazone is of interest for further synthetic strategies and biological studies.

摘要

噻唑烷酮类抗癌候选药物三嗪是目前研究最多的药物之一,已有超过 30 项的临床 I 期和 II 期研究对其进行了评估。然而,其在实体瘤方面的疗效却令人失望,这至少可以部分归因于药物向肿瘤部位的递送效率低下。因此,我们合成了首个生物素功能化噻唑烷酮衍生物,以提高肿瘤的特异性和积累。此外,我们还制备了三嗪和一种生物素缀合物的铁(III)和铜(II)配合物。随后,我们在具有不同生物素摄取能力的细胞系中对这些新型化合物进行了生物学评估。该金属络合物显示出与参考化合物三嗪相当的活性。然而,令人惊讶的是,生物素化衍生物的金属配合物的抗癌活性却显著降低。为了进一步分析金属配合物之间可能存在的差异,我们进行了详细的物理化学和电化学实验。然而,无论是脂溶性、配合物溶液稳定性,还是还原电位或在存在生物相关还原剂的情况下的行为,生物素化和非生物素化衍生物之间都没有明显的差异(仅观察到还原动力学的一些差异)。尽管如此,三嗪的金属自由生物素缀合物在口服应用于结肠癌小鼠模型时表现出明显的活性,与三嗪相当。因此,这种类型的生物素缀合噻唑烷酮衍生物具有进一步的合成策略和生物学研究价值。

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