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二茂铁-依维莫司杂合物的设计、合成与生物活性评价:二茂铁基对增殖抑制和驱动蛋白纺锤体蛋白抑制活性的影响。

Design, Synthesis, and Evaluation of Biological Activity of Ferrocene-Ispinesib Hybrids: Impact of a Ferrocenyl Group on the Antiproliferative and Kinesin Spindle Protein Inhibitory Activity.

机构信息

Laboratory of Molecular Spectroscopy, Department of Organic Chemistry Faculty of Chemistry, University of Lodz ul. Tamka 12, 91-403, Łódź, Poland.

Cytometry Lab, Department of Oncobiology and Epigenetics, Faculty of Biology and Environmental Protection, University of Lodz ul. Pomorska 141/143, 90-236, Łódź, Poland.

出版信息

Chemistry. 2023 Sep 1;29(49):e202300813. doi: 10.1002/chem.202300813. Epub 2023 Jul 31.

Abstract

With the aim to combine more than one biologically-active component in a single molecule, derivatives of ispinesib and its (S) analogue were prepared that featured ferrocenyl moieties or bulky organic substituents. Inspired by the strong kinesin spindle protein (KSP) inhibitory activity of ispinesib, the compounds were investigated for their antiproliferative activity. Among these compounds, several derivatives demonstrated significantly higher antiproliferative activity than ispinesib with nanomolar IC values against cell lines. Further evaluation indicated that the antiproliferative activity is not directly correlated with their KSP inhibitory activity while docking suggested that several of the derivatives may bind in a manner similar to ispinesib. In order to investigate the mode of action further, cell cycle analysis and reactive oxygen species formation were investigated. The improved antiproliferative activity of the most active compounds may be assigned to synergic effects of various factors such as KSP inhibitory activity due to the ispinesib core and ability to generate ROS and induce mitotic arrest.

摘要

为了将一种以上具有生物活性的成分结合在一个单一的分子中,制备了伊匹斯汀及其(S)类似物的衍生物,其特征在于具有二茂铁部分或大体积有机取代基。受伊匹斯汀对驱动蛋白纺锤体蛋白(KSP)的强烈抑制活性的启发,研究了这些化合物的抗增殖活性。在这些化合物中,有几个衍生物表现出比伊匹斯汀更高的抗增殖活性,对细胞系的纳米摩尔 IC 值具有显著的抑制作用。进一步的评估表明,抗增殖活性与它们的 KSP 抑制活性没有直接关系,而对接表明,一些衍生物可能以类似于伊匹斯汀的方式结合。为了进一步研究作用模式,研究了细胞周期分析和活性氧的形成。最活跃的化合物的增殖活性的提高可能归因于各种因素的协同作用,如由于伊匹斯汀核心而产生的 KSP 抑制活性以及产生 ROS 和诱导有丝分裂阻滞的能力。

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