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喹唑啉和查耳酮部分的组合产生了新型强效的乳腺癌耐药蛋白(BCRP/ABCG2)异二聚体调节剂。

The combination of quinazoline and chalcone moieties leads to novel potent heterodimeric modulators of breast cancer resistance protein (BCRP/ABCG2).

作者信息

Kraege Stefanie, Stefan Katja, Juvale Kapil, Ross Thomas, Willmes Thomas, Wiese Michael

机构信息

Pharmaceutical Chemistry II, Pharmaceutical Institute, University of Bonn, An der Immenburg 4, 53121 Bonn, Germany.

Pharmaceutical Chemistry II, Pharmaceutical Institute, University of Bonn, An der Immenburg 4, 53121 Bonn, Germany.

出版信息

Eur J Med Chem. 2016 Jul 19;117:212-29. doi: 10.1016/j.ejmech.2016.03.067. Epub 2016 Mar 28.

Abstract

During the last decade it has been found that chalcones and quinazolines are promising inhibitors of ABCG2. The combination of these two scaffolds offers a new class of heterocyclic compounds with potentially high inhibitory activity against ABCG2. For this purpose we investigated 22 different heterodimeric derivatives. In this series only methoxy groups were used as substituents as these had been proven superior for inhibitory activity of chalcones. All compounds were tested for their inhibitory activity, specificity and cytotoxicity. The most potent ABCG2 inhibitor in this series showed an IC50 value of 0.19 μM. It possesses low cytotoxicity (GI50 = 93 μM), the ability to reverse MDR and is nearly selective toward ABCG2. Most compounds containing dimethoxy groups showed slight activity against ABCB1 too. Among these three compounds (17, 19 and 24) showed even higher activity toward ABCB1 than ABCG2. All inhibitors were further screened for their effect on basal ATPase activity. Although the basal ATPase activity was partially stimulated, the compounds were not transported by ABCG2. Thus, quinazoline-chalcones are a new class of effective ABCG2 inhibitors.

摘要

在过去十年中,人们发现查耳酮和喹唑啉是有前景的ABCG2抑制剂。这两种骨架的组合提供了一类新型杂环化合物,对ABCG2可能具有高抑制活性。为此,我们研究了22种不同的异二聚体衍生物。在该系列中,仅使用甲氧基作为取代基,因为已证明这些取代基对查耳酮的抑制活性更优。对所有化合物进行了抑制活性、特异性和细胞毒性测试。该系列中最有效的ABCG2抑制剂的IC50值为0.19 μM。它具有低细胞毒性(GI50 = 93 μM),具有逆转多药耐药性的能力,并且对ABCG2几乎具有选择性。大多数含有二甲氧基的化合物对ABCB1也表现出轻微活性。其中三种化合物(17、19和24)对ABCB1的活性甚至高于对ABCG2的活性。对所有抑制剂进一步筛选其对基础ATP酶活性的影响。尽管基础ATP酶活性受到部分刺激,但这些化合物不会被ABCG2转运。因此,喹唑啉 - 查耳酮是一类新型有效的ABCG2抑制剂。

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