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强效钌-二茂铁双金属抗肿瘤抗血管生成剂,可规避铂耐药性:从合成和机制研究到斑马鱼评估。

Potent Ruthenium-Ferrocene Bimetallic Antitumor Antiangiogenic Agent That Circumvents Platinum Resistance: From Synthesis and Mechanistic Studies to Evaluation in Zebrafish.

机构信息

Medicinal Chemistry and Cell Biology Laboratory, Department of Chemical Sciences, Tata Institute of Fundamental Research, Homi Bhabha Road, Mumbai, Maharashtra 400005, India.

Department of Developmental Biology, Agharkar Research Institute, G G Agarkar Road, Pune, Maharashtra 411004, India.

出版信息

J Med Chem. 2022 Dec 22;65(24):16353-16371. doi: 10.1021/acs.jmedchem.2c01174. Epub 2022 Dec 2.

Abstract

Emergence of resistance in cancer cells and dose-limiting side effects severely limit the widespread use of platinum (Pt) anticancer drugs. Multi-action hybrid anticancer agents that are constructed by merging two or more pharmacophores offer the prospect of circumventing issues of Pt drugs. Herein, we report the design, synthesis, and in-depth biological evaluation of a ruthenium-ferrocene (Ru-Fc) bimetallic agent [(η--cymene)Ru(1,1,1-trifluoro-4-oxo-4-ferrocenyl-but-2-en-2-olate)Cl] and its five analogues. Along with aquation/anation chemistry, we evaluated the antitumor potency, Pt cross-resistance profile, and antiangiogenic properties. A structure activity analysis was performed to understand the impact of Fc, CF, and -cymene groups on the anticancer potency of the Ru-Fc hybrid. Finally, in addition to assessing cellular uptake and intracellular distribution, we demonstrated that the Ru-Fc hybrid binds to nucleophilic biomolecules and produces reactive oxygen species, which causes mitochondrial dysfunction and induces ER stress, leading to poly(ADP-ribose) polymerase-mediated necroptotic cell death.

摘要

癌细胞耐药性的出现和剂量限制的副作用严重限制了铂(Pt)抗癌药物的广泛应用。通过将两个或多个药效团融合构建的多作用杂交抗癌剂提供了规避 Pt 药物问题的前景。在此,我们报告了钌-二茂铁(Ru-Fc)双金属试剂[(η--cymene)Ru(1,1,1-三氟-4-氧代-4-二茂铁基-丁-2-烯-2-醇)Cl]及其五种类似物的设计、合成和深入的生物学评价。除了水合/反合化学外,我们还评估了抗肿瘤效力、Pt 交叉耐药性和抗血管生成特性。进行了结构活性分析,以了解 Fc、CF 和-cymene 基团对 Ru-Fc 杂化物抗癌效力的影响。最后,除了评估细胞摄取和细胞内分布外,我们还证明 Ru-Fc 杂化物与亲核生物分子结合并产生活性氧,导致线粒体功能障碍和内质网应激,从而引发多聚(ADP-核糖)聚合酶介导的坏死性细胞死亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ed2/7616001/e081ea38178d/EMS196017-f014.jpg

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