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首页> 外文期刊>Journal of Medicinal Chemistry >In Vivo Selectivity and Localization of Reactive Oxygen Species (ROS) Induction by Osmium Anticancer Complexes That Circumvent Platinum Resistance
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In Vivo Selectivity and Localization of Reactive Oxygen Species (ROS) Induction by Osmium Anticancer Complexes That Circumvent Platinum Resistance

机译:通过锇抗癌络合物的活性氧物种(ROS)诱导的体内选择性和定位,透明铂抗性

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Platinum drugs are widely used for cancer treatment. Other precious metals are promising, but their clinical progress depends on achieving different mechanisms of action to overcome Pt-resistance. Here, we evaluate 13 organo-Os complexes: 16-electron sulfonyl-diamine catalysts [(eta(6)-arene)Os(N,N')], and 18-electron phenylazopyridine complexes [(eta(6)-arene) Os (N,N') Cl/I](+) ( arene = p-cymene, biphenyl, or terphenyl). Their antiproliferative activity does not depend on p21 or 1%53 status, unlike cisplatin, and their selective potency toward cancer cells involves the generation of reactive oxygen species. Evidence of such a mechanism of action has been found both in vitro and in vivo. This work appears to provide the first study of osmium complexes the zebrafish model, which has been shown to closely model toxicity in humans. A fluorescent osmium complex, derived from a lead compound, was employed to confirm internalization of the complex, visualize in vivo distribution, and confirm colocalization with reactive oxygen species generated in zebrafish.
机译:铂药物广泛用于癌症治疗。其他贵金属是有希望的,但他们的临床进步取决于实现不同的行动机制来克服PT抗性。在此,我们评估13个有机OS复合物:16-电子磺酰基二胺催化剂[(eta(6) - are one)OS(n,n')]和18-亚电子苯基吡啶配合物[(eta(6) - rene) OS(N,N')Cl / I](+)(Arene = P-CyheNe,联苯或三苯基)。与顺铂不同,它们的抗增殖活性不依赖于P21或1%53状态,并且它们对癌细胞的选择性效力涉及产生反应性氧物种。在体外和体内发现这种作用机制的证据。这项工作似乎提供了对锇复合物的第一研究斑马鱼模型,这已被证明是在人类中密切模范毒性。衍生自引导化合物的荧光锇络合物,用于确认复合物的内化,体内分布可视化,并确认斑马鱼中产生的反应性氧物质的分致化。

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