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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Design, synthesis and biological evaluation of 6-(nitroimidazole-1H-alkyloxyl)-4-anilinoquinazolines as efficient EGFR inhibitors exerting cytotoxic effects both under normoxia and hypoxia
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Design, synthesis and biological evaluation of 6-(nitroimidazole-1H-alkyloxyl)-4-anilinoquinazolines as efficient EGFR inhibitors exerting cytotoxic effects both under normoxia and hypoxia

机译:6-(硝基咪唑-1H-烷氧基)-4-苯胺基喹唑啉类化合物的设计,合成及生物学评价

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A series of novel 6-(nitroimidazole-1H-alkyloxyl)-4-anilinoquinazoline derivatives (15a-15r) were designed, synthesized and evaluated as efficient EGFR inhibitors through introduction of hypoxia activated nitroimidazole moiety into the quinazoline scaffold of EGFR inhibitors. The majority of these newly synthesized compounds exhibited comparable EGFR inhibitory activities to gefitinib and moderate to excellent anti-proliferative activities against HT-29 cells under normoxia and hypoxia. The most promising compound 15c displayed the IC50 value of 0.47 nM against EGFR kinase and excellent cytotoxic effect against HT-29 cells under normoxia and hypoxia with the IC50 values of 2.21 mu M and 1.62 mu M, respectively. The mimic reductive activation study revealed that compound 15c exerted reductive activation properties under hypoxia, which were consistent with the in vitro metabolic study, wherein 15c was easily reductive activated under hypoxia and much more stable under normoxia. All these results suggested that 15c was a potential cancer therapeutic agent both under normoxia and hypoxia and was worth of further development. Crown Copyright (C) 2014 Published by Elsevier Masson SAS. All rights reserved.
机译:通过将低氧活化的硝基咪唑基团引入EGFR抑制剂的喹唑啉骨架中,设计,合成和评估了一系列新型的6-(硝基咪唑-1H-烷氧基)-4-苯胺基喹唑啉衍生物(15a-15r),并将其评估为有效的EGFR抑制剂。这些新合成的化合物中的大多数对吉非替尼表现出可比的EGFR抑制活性,并且在常氧和低氧下对HT-29细胞具有中等至优异的抗增殖活性。最有前途的化合物15c在常氧和低氧条件下对EGFR激酶的IC50值为0.47 nM,对HT-29细胞具有优异的细胞毒性作用,其IC50值为2.21μM和1.62μM。模拟还原激活研究表明,化合物15c在缺氧条件下具有还原激活特性,这与体外代谢研究一致,在体外代谢研究中,15c在缺氧条件下易于还原激活,在常氧条件下稳定性更高。所有这些结果表明15c在常氧和低氧下都是潜在的癌症治疗剂,值得进一步开发。官方版权(C)2014,由Elsevier Masson SAS发布。版权所有。

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