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首页> 外文期刊>Journal of Medicinal Chemistry >Water stability and cytotoxic activity relationship of a series of ferrocenium derivatives. ESR insights on the radical production during the degradation process.
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Water stability and cytotoxic activity relationship of a series of ferrocenium derivatives. ESR insights on the radical production during the degradation process.

机译:一系列二茂铁衍生物的水稳定性与细胞毒性活性的关系。 ESR对降解过程中自由基产生的见解。

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摘要

The cytotoxicity of some ferrocenium salts and the lack of activity of the corresponding ferrocenes has been already demonstrated. The cytotoxic activity in different conditions of decamethylferrocenium tetrafluoroborate (DEMFc(+)) in comparison with four other ferrocenium derivatives on MCF-7 cell line is reported. The relative stability in aqueous solutions with different buffering agents is investigated by means of UV-vis spectroscopy and correlated to the cytotoxic properties of the compounds. DEMFc(+), the most stable compound, shows the highest efficiency in inhibiting cell growth (IC(50) 35 microM, for 48 h treatment). Relaxation time measurements point out the involvement of water molecules in the degradation process. ESR results confirm the ability of ferrocenium cations to produce oxygen radical species as a consequence of their degradation in water. Oxygen-dependent formation of both hydroxyl and superoxide radicals is established by the spin-trapping technique. A direct evidence of the DEMFc(+) radical production into the viable cells is obtained by means of fluorescence-activated cell sorter (FACS) analysis that reveals a dose-dependent growth of 8-oxoguanine, the initial product of the guanine oxidation. This DNA oxidative stress justifies the cytotoxic effect of DEMFc(+). Furthermore, the cytotoxic cooperative effect of bleomycin, an iron-dependent antitumor drug, and DEMFc(+) has been tested. We have demonstrated the synergic effect between the two drugs, that is explained by the complementary oxidative damage inflicted to DNA as well as by the increasing of bleomycin activation by the iron(II/III) species available in the cell compartment from ferrocenium degradation.
机译:已经证明了某些二茂铁鎓盐的细胞毒性和相应二茂铁缺乏活性。据报道,在四氟硼酸十甲基二茂铁铈(DEMFc(+))与其他四个四茂铁衍生物在MCF-7细胞系中的不同条件下的细胞毒活性。通过紫外-可见光谱研究了具有不同缓冲剂的水溶液的相对稳定性,并与化合物的细胞毒性有关。最稳定的化合物DEMFc(+)在抑制细胞生长方面表现出最高的效率(IC(50)35 microM,处理48小时)。弛豫时间测量结果表明水分子参与了降解过程。 ESR结果证实了二茂铁阳离子由于在水中降解而产生氧自由基的能力。通过自旋俘获技术建立了羟基和超氧化物自由基的氧依赖性形成。可以通过荧光激活细胞分选仪(FACS)分析获得DEMFc(+)自由基向活细胞产生的直接证据,该分析揭示了鸟嘌呤氧化的初始产物8-氧代鸟嘌呤的剂量依赖性生长。这种DNA氧化应激证明DEMFc(+)具有细胞毒性作用。此外,已经测试了博莱霉素(一种铁依赖性抗肿瘤药)和DEMFc(+)的细胞毒协同作用。我们已经证明了这两种药物之间的协同作用,这可以通过对DNA造成的互补性氧化损伤以及由于二茂铁鎓降解而在细胞室中可用的铁(II / III)物种增加的博来霉素活化来解释。

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