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Potent organometallic osmium compounds induce mitochondria-mediated apoptosis and S-phase cell cycle arrest in A549 non-small cell lung cancer cells

机译:强大的有机金属化合物诱导A549非小细胞肺癌细胞中线粒体介导的细胞凋亡和S期细胞周期阻滞

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摘要

The problems of acquired resistance associated with platinum drugs may be addressed by chemotherapeutics based on other transition metals as they offer the possibility of novel mechanisms of action. In this study, the cellular uptake and induction of apoptosis in A549 human non-small cell lung cancer cells of three promising osmium(II) arene complexes containing azopyridine ligands, [Os(η6-arene)(p-R-phenylazopyridine)X]PF6, where arene is p-cymene or biphenyl, R is OH or NMe2, and X is Cl or I, were investigated. These complexes showed time-dependent (4–48 h) potent anticancer activity with highest potency after 24 h (IC50 values ranging from 0.1 to 3.6 μM). Cellular uptake of the three compounds as quantified by ICP-MS, was independent of their log P values (hydrophobicity). Furthermore, maximum cell uptake was observed after 24 h, with evident cell efflux of the osmium after 48 and 72 h of exposure, which correlated with the corresponding IC50 values. The most active compound 2, [Os(η6-p-cymene)(NMe2-phenylazopyridine)I]PF6, was taken up by lung cancer cells predominately in a temperature-dependent manner indicating that energy-dependent mechanisms are important in the uptake of 2. Cell fractionation studies showed that all three compounds accumulated mainly in cellular membranes. Furthermore, compound 2 induced apoptosis and caused accumulation in the S-phase of the cell cycle. In addition, 2 induced cytochrome c release and alterations in mitochondrial membrane potential even after short exposure times, indicating that mitochondrial apoptotic pathways are involved. This study represents the first steps towards understanding the mode of action of this promising class of new osmium-based chemotherapeutics.
机译:与铂类药物有关的获得性耐药性问题可以通过基于其他过渡金属的化学疗法来解决,因为它们提供了新的作用机理。在这项研究中,细胞对A549人非小细胞肺癌细胞的三种摄取以及诱导凋亡的三种有希望的complex(II)芳烃配合物,它们含有偶氮吡啶配体[Os(η6-芳烃)(pR-苯基偶氮吡啶)X] PF6,其中芳烃是对苯甲基或联苯,R是OH或NMe2,X是Cl或I。这些复合物显示出时间依赖性(4–48小时)有效的抗癌活性,并在24小时后具有最高的效力(IC50值介于0.1至3.6μM之间)。通过ICP-MS定量测定的三种化合物的细胞摄取量与它们的log P值(疏水性)无关。此外,在24小时后观察到最大的细胞摄取,在暴露48和72小时后,明显的cell细胞外排,与相应的IC50值相关。肺癌细胞主要以温度依赖性方式吸收最具活性的化合物2 [Os(η6-p-cymene)(NMe2-苯基偶氮吡啶)I] PF6,这表明能量依赖性机制在摄取过程中很重要。 2.细胞分离研究表明,所有三种化合物主要在细胞膜中积累。此外,化合物2诱导细胞凋亡并引起细胞周期的S期蓄积。此外,即使经过很短的暴露时间,2诱导的细胞色素c释放和线粒体膜电位的改变也表明线粒体的凋亡途径。这项研究代表了迈向了解这种有前途的新型-基化学疗法的作用方式的第一步。

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