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Amine linked flavonoid dimers as modulators for P-glycoprotein-based multidrug resistance : structure-activity relationship and mechanism of modulation

机译:胺连接的类黄酮二聚体作为基于P-糖蛋白的多药耐药性的调节剂:结构-活性关系和调节机制

摘要

Here we report a great improvement in reversal potency of cancer drug resistance when flavonoid dimers possess a functionally substituted aminopolyethylene glycol linker. The most potent compound, 18, contains a N-benzyl group at the linker. It has many advantages including (1) high potencies in reversing P-glycoprotein (P-gp) mediated resistance in LCC6MDR cells to various anticancer drugs with EC 50 in the nanomolar range, (2) low toxicity and high therapeutic index, and (3) preferential inhibition of P-gp over multidrug resistance protein 1 and breast cancer resistance protein. Compound 18 stimulates P-gp-ATPase activity by 2.7-fold and mediates a dose-dependent inhibition of doxorubicin (DOX) transport activity. Lineweaver-Burk and Dixon plots suggest that 18 is a competitive inhibitor to DOX in binding to P-gp with a K i of 0.28-0.34 μM and a Hill coefficient of 1.17. Moreover, the LCC6MDR cell displays about 2.1-fold lower intracellular accumulation of 18 compared to the wild type, suggesting that 18 is a P-gp substrate as well.
机译:当类黄酮二聚体具有功能性取代的氨基聚乙二醇连接基时,我们在这里报告了对癌症耐药性逆转潜力的极大改善。最有效的化合物18在接头处含有N-苄基。它具有许多优势,包括:(1)可以有效逆转LCC6MDR细胞中P-糖蛋白(P-gp)介导的对纳摩尔浓度EC 50的各种抗癌药物的耐药性;(2)低毒性和高治疗指数,以及(3) )优先抑制P-gp而不是多重耐药蛋白1和乳腺癌耐药蛋白。化合物18刺激P-gp-ATPase活性增加2.7倍,并介导剂量依赖性阿霉素(DOX)转运活性抑制。 Lineweaver-Burk和Dixon图表明18是与P-gp结合的DOX竞争性抑制剂,K i为0.28-0.34μM,Hill系数为1.17。此外,与野生型相比,LCC6MDR细胞显示18的细胞内积累低约2.1倍,这表明18也是P-gp底物。

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