Kasparkova Jana, Kostrhunova Hana, Novohradsky Vojtech, Logvinov Аlexey A, Temnov Viktor V, Borisova Nataliya E, Podrugina Tatiana A, Markova Lenka, Starha Pavel, Nazarov Alexey A, Brabec Viktor
Czech Academy of Sciences, Institute of Biophysics, Brno, CZ-61265, Czech Republic.
Lomonosov Moscow State University, Faculty of Chemistry, Leninskie Gory 1/3, Moscow 119991, Russia.
Bioinorg Chem Appl. 2022 Mar 2;2022:1717200. doi: 10.1155/2022/1717200. eCollection 2022.
One concept of improving anticancer effects of conventional platinum-based antitumor drugs consists of conjugating these compounds with other biologically (antitumor) active agents, acting by a different mechanism. Here, we present synthesis, physicochemical characterization, biological effects, and mechanisms of action of four new analogs of conventional cisplatin, namely, cis-Pt(II) complexes containing either methyl or ethyl pyrazole N-donor ligands and chlorido or iodido ligands. It is noteworthy that while chlorido complexes display activity in a variety of cancer cell lines comparable to cisplatin, iodido complexes are considerably more potent due to their enhanced hydrophobicity and consequently enhanced cellular accumulation. Moreover, all of the studied Pt(II) alkylpyrazole complexes display a higher selectivity for tumor cells and effectively overcome the acquired resistance to cisplatin. Further results focused on the mechanism of action of the studied complexes and showed that in contrast to cisplatin and several platinum-based antitumor drugs, DNA damage by the investigated Pt(II)-alkylpyrazole complexes does not play a major role in their mechanism of action. Our findings demonstrate that inhibition of the tubulin kinesin Eg5, which is essential for forming a functional mitotic spindle, plays an important role in their mechanism of antiproliferative action.
提高传统铂类抗肿瘤药物抗癌效果的一种理念是将这些化合物与其他具有不同作用机制的生物(抗肿瘤)活性剂结合。在此,我们展示了四种传统顺铂新类似物的合成、物理化学表征、生物学效应及作用机制,即含有甲基或乙基吡唑氮供体配体以及氯或碘配体的顺铂(II)配合物。值得注意的是,虽然氯配合物在多种癌细胞系中表现出与顺铂相当的活性,但碘配合物因其增强的疏水性以及随之增强的细胞积累而具有更强的效力。此外,所有研究的铂(II)烷基吡唑配合物对肿瘤细胞表现出更高的选择性,并有效克服了对顺铂的获得性耐药。进一步的结果聚焦于所研究配合物的作用机制,表明与顺铂及几种铂类抗肿瘤药物不同,所研究的铂(II)-烷基吡唑配合物造成的DNA损伤在其作用机制中并不起主要作用。我们的研究结果表明,抑制对形成功能性有丝分裂纺锤体至关重要的微管驱动蛋白Eg5在其抗增殖作用机制中发挥着重要作用。