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A new generation of ferrociphenols leads to a great diversity of reactive metabolites and exhibits remarkable antiproliferative properties

机译:新一代亚铁氰酚可导致多种反应性代谢产物并具有出色的抗增殖特性

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摘要

Organometallic compounds bearing the redox motif [ferrocenyl-ene-phenol] have very promising antiproliferative properties which have been further improved by incorporating pertinent substituents able to engender new mechanisms. Here we show that novel ferrociphenols bearing a hydroxypropyl chain exhibit strong antiproliferative effects, in most cases much better than those of cisplatin, tamoxifen, or of previously described ferrociphenols devoid of this terminal OH. This is illustrated, in the case of one of these compounds, by its IC50 values of 110 nM for MDA-MB-231 triple negative breast cancer cells and of 300 nM for cisplatin-resistant A2780cisR human ovarian cancer cells, and by its GI50 values lower than 100 nM towards a series of melanoma and renal cancer cell lines of the NCI-60 panel. Interestingly, oxidative metabolism of these hydroxypropyl-ferrociphenols yields two kinds of quinone methides (QMs) that readily react with various nucleophiles, such as glutathione, to give 1,6- and 1,8-adducts. Protonation of these quinone methides generates numerous reactive metabolites leading eventually to many rearrangement and cleavage products. This unprecedented and fully characterized metabolic profile involving a wide range of electrophilic metabolites that should react with cell macromolecules may be linked to the remarkable profile of antiproliferative activities of this new series. Indeed, the great diversity of unexpected reactive metabolites found upon oxidation will allow them to adapt to various situations present in the cancer cell. These data initiate a novel strategy for the rational design of anticancer molecules, thus opening the way to new organometallic potent anticancer drug candidates for the treatment of chemoresistant cancers.
机译:带有氧化还原基序的有机金属化合物[二茂铁基-烯基-苯酚]具有非常有前途的抗增殖性能,通过引入能够引起新机理的相关取代基,这些性能得到了进一步改善。在这里,我们显示了带有羟丙基链的新型亚铁氰酚表现出强大的抗增殖作用,在大多数情况下比顺铂,他莫昔芬或先前描述的不含该末端OH的亚铁酚要好得多。在这些化合物之一的情况下,对于MDA-MB-231三阴性乳腺癌细胞,其IC50值为110 nM;对于顺铂耐药的A2780cisR人卵巢癌细胞,其IC50值为300 nM,并且通过GI50值可以说明这一点。低于NCI-60小组的一系列黑素瘤和肾癌细胞系的100 nM。有趣的是,这些羟丙基-亚铁环酚的氧化代谢产生了两种醌甲基化物(QM),它们容易与各种亲核试剂(如谷胱甘肽)反应,生成1,6-和1,8-加合物。这些醌甲基化物的质子化产生大量反应性代谢产物,最终导致许多重排和裂解产物。这种前所未有的,具有充分特征的代谢谱涉及多种应与细胞大分子发生反应的亲电子代谢物,这可能与该新系列抗增殖活性的显着谱有关。确实,氧化后发现的意外反应性代谢产物的多样性将使它们适应癌细胞中存在的各种情况。这些数据为合理设计抗癌分子提出了新的策略,从而为有机金属有效的新型抗癌药物候选药物的治疗方法开辟了道路。

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