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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis and Biological Evaluation of 4-Anilino-quinazolines and -quinolines as Inhibitors of Breast Cancer Resistance Protein (ABCG2)
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Synthesis and Biological Evaluation of 4-Anilino-quinazolines and -quinolines as Inhibitors of Breast Cancer Resistance Protein (ABCG2)

机译:4-苯醌-喹唑啉和-喹啉类药物作为乳腺癌抗性蛋白(ABCG2)抑制剂的合成及生物学评价

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摘要

Chemotherapeutic treatment of cancer often fails due to overexpression of the ATP-binding cassette (ABC) transport proteins, like ABCG2, triggering active efflux of various structurally unrelated drugs. This so-called multidrug resistance (MDR) may be reversed by selective, potent, and nontoxic inhibitors of ABCG2. As only a few potent inhibitors are known, new compounds based on a 4-substituted-2-phenylquinazoline scaffold were investigated. Substitution with hydroxy, cyano, nitro, acetamido, and fluoro led to high inhibitory activities toward ABCG2. The ability to reverse MDR of the most active compounds was confirmed in a MTT efficacy assay. Moreover, a negligibly low, intrinsic cytotoxicity was found resulting in a high therapeutic ratio. Investigations of the inhibitory activity toward ABCB1 and ABCC1 yielded a high selectivity toward ABCG2 for the quinazoline compounds. Qninoline-based analogues showed lower inhibitory activity and selectivity. The study yielded a variety of promising compounds, some with superior properties compared to those of the standard inhibitor Ko143.
机译:癌症的化学疗法治疗通常会因ATP结合盒(ABC)转运蛋白(如ABCG2)的过表达而失败,从而触发各种与结构无关的药物的主动流出。这种所谓的多药耐药性(MDR)可以通过ABCG2的选择性,有效和无毒抑制剂来逆转。因为仅已知几种有效的抑制剂,所以研究了基于4-取代的-2-苯基喹唑啉骨架的新化合物。用羟基,氰基,硝基,对乙酰氨基和氟取代可导致对ABCG2的高度抑制活性。在MTT功效测定中证实了逆转最具活性的化合物的MDR的能力。此外,发现可忽略的低固有细胞毒性导致高治疗率。对喹唑啉化合物对ABCB1和ABCC1的抑制活性的研究产生了对ABCG2的高选择性。基于喹诺啉的类似物显示较低的抑制活性和选择性。该研究产生了各种有希望的化合物,其中一些具有比标准抑制剂Ko143更好的性能。

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