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Synthesis and Anticancer Cytotoxicity of Azaaurones Overcoming Multidrug Resistance

机译:Azaaurones克服多药耐药性的合成与抗癌细胞毒性

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The resistance of tumors against anticancer drugs is a major impediment for chemotherapy. Tumors often develop multidrug resistance as a result of the cellular efflux of chemotherapeutic agents by ABC transporters such as P-glycoprotein (ABCB1/P-gp), Multidrug Resistance Protein 1 (ABCC1/MRP1), or Breast Cancer Resistance Protein (ABCG2/BCRP). By screening a chemolibrary comprising 140 compounds, we identified a set of naturally occurring aurones inducing higher cytotoxicity against P-gp-overexpressing multidrug-resistant (MDR) cells versus sensitive (parental, non-P-gp-overexpressing) cells. Follow-up studies conducted with the P-gp inhibitor tariquidar indicated that the MDR-selective toxicity of azaaurones is not mediated by P-gp. Azaaurone analogs possessing pronounced effects were then designed and synthesized. The knowledge gained from structure–activity relationships will pave the way for the design of a new class of anticancer drugs selectively targeting multidrug-resistant cancer cells.
机译:肿瘤对抗抗癌药物的抗性是化疗的主要障碍。由于P-糖蛋白(ABCB1 / P-GP),多药抗性蛋白质1(ABCC1 / MRP1)或乳腺癌抗性蛋白(ABCG2 / BCRP)(ABCG2 / BCRP)(ABCG2 / BCRP)(ABCG2 / BCRP)(ABCG2 / BCRP )。通过筛选包含140种化合物的嗜培养基,我们鉴定了一组天然存在的AuR​​ones,诱导对P-GP过表达的多药抗性(MDR)细胞具有敏感(亲本,非P-GP过表达)细胞的细胞毒性。用P-GP抑制剂靶向进行的后续研究表明,Azaaurones的MDR选择性毒性未被P-GP介导。然后设计和合成具有明显效果的Azaaurone类似物。从结构 - 活动关系中获得的知识将为选择性靶向多药癌细胞的新类抗癌药物设计。

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