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首页> 外文期刊>Intelligence: A Multidisciplinary Journal >Unshielding Multidrug Resistant Cancer through Selective Iron Depletion of P-Glycoprotein-Expressing Cells
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Unshielding Multidrug Resistant Cancer through Selective Iron Depletion of P-Glycoprotein-Expressing Cells

机译:通过选择性铁耗尽对表达糖蛋白的细胞的选择性铁耗尽来实现无抗抗性癌症

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摘要

Clinical evidence shows that following initial response to treatment, drug-resistant cancer cells frequently evolve and, eventually, most tumors become resistant to all available therapies. We compiled a focused library consisting of >500 commercially available or newly synthetized 8-hydroxyquinoline (8OHQ) derivatives whose toxicity is paradoxically increased rather than decreased by the activity of P-glycoprotein (Pgp), a transporter conferring multidrug resistance (MDR). Here, we deciphered the mechanism of action of NSC297366 that shows exceptionally strong Pgp-potentiated toxicity. Treatment of cells with NSC297366 resulted in changes associated with the activity of potent anticancer iron chelators. Strikingly, iron depletion was more pronounced in MDRcells due to the Pgp-mediated efflux of NSC297366-iron complexes. Our results indicate that iron homeostasis can be targeted by MDR-selective compounds for the selective elimination of multidrug resistant cancer cells, setting the stage for a therapeutic approach to fight transporter-mediated drug resistance.
机译:临床证据表明,在治疗的初始反应之后,耐药性癌细胞经常发展,最终,大多数肿瘤对所有可用疗法抵抗。我们编译了由> 500个市售或新合成的8-羟基喹啉(8Ohq)衍生物组成的聚焦文库,其毒性是矛盾的,而不是通过P-糖蛋白(PGP)的活性降低,其转运蛋白赋予多药耐药性(MDR)。在这里,我们破译了NSC297366的作用机制,其显示出异常强的PGP调节毒性。用NSC297366治疗细胞导致与强效抗癌铁螯合剂的活性相关的变化。引人注目的是,由于NSC297366-铁复合物的PGP介导的Exflux,MDRCell在MDRCell中更加明显。我们的研究结果表明,铁稳态可以通过MDR选择性化合物靶向,用于选择性消除多药抗性癌细胞,为试验介导的耐药性抗性的治疗方法进行阶段。

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