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三唑桥连类黄酮二聚体作为有效、低毒且高选择性乳腺癌耐药蛋白(BCRP/ABCG2)抑制剂。

Triazole Bridged Flavonoid Dimers as Potent, Nontoxic, and Highly Selective Breast Cancer Resistance Protein (BCRP/ABCG2) Inhibitors.

机构信息

Department of Applied Biology and Chemical Technology and State Key Laboratory of Chemical Biology and Drug Discovery , Hong Kong Polytechnic University , Hong Kong SAR, China.

School of Environmental Science and Engineering , Shanghai Jiao Tong University , Shanghai 200240 , China.

出版信息

J Med Chem. 2019 Sep 26;62(18):8578-8608. doi: 10.1021/acs.jmedchem.9b00963. Epub 2019 Sep 12.

Abstract

The present work describes the syntheses of diverse triazole bridged flavonoid dimers and identifies potent, nontoxic, and highly selective BCRP inhibitors. A homodimer, , with -methoxycarbonylbenzyloxy substitution at C-3 of the flavone moieties and a triazole-containing linker (21 atoms between the two flavones) showed low toxicity (IC toward L929, 3T3, and HFF-1 > 100 μM), potent BCRP-inhibitory activity (EC = 1-2 nM), and high BCRP selectivity (BCRP selectivity over MRP1 and P-gp > 455-909). inhibits BCRP-ATPase activity, blocks the drug efflux activity of BCRP, elevates the intracellular drug accumulation, and finally restores the drug sensitivity of BCRP-overexpressing cells. It does not down-regulate the surface BCRP protein expression to enhance the drug retention. Therefore, and similar flavonoid dimers appear to be promising candidates for further development into combination therapy to overcome MDR cancers with BCRP overexpression.

摘要

本工作描述了不同三唑桥连黄酮二聚体的合成,并鉴定了有效、无毒且高选择性的 BCRP 抑制剂。具有黄酮部分 C-3 上的 -甲氧羰基苄氧基取代基和含三唑的连接体(两个黄酮之间有 21 个原子)的同源二聚体,表现出低毒性(对 L929、3T3 和 HFF-1 的 IC > 100 μM)、强 BCRP 抑制活性(EC = 1-2 nM)和高 BCRP 选择性(BCRP 对 MRP1 和 P-gp 的选择性 > 455-909)。抑制 BCRP-ATP 酶活性,阻断 BCRP 的药物外排活性,增加细胞内药物蓄积,最终恢复 BCRP 过表达细胞的药物敏感性。它不会下调表面 BCRP 蛋白表达以增强药物保留。因此,类似黄酮二聚体似乎是进一步开发联合治疗以克服 BCRP 过表达的多药耐药性癌症的有前途的候选物。

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