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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Metabolism evaluation of the anticancer candidate AC04 by biomimetic oxidative model and rat liver microsomes.
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Metabolism evaluation of the anticancer candidate AC04 by biomimetic oxidative model and rat liver microsomes.

机译:通过仿生氧化模型和大鼠肝微粒体评估抗癌候选药物AC04的代谢。

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摘要

Jacobsen reagents, in the presence of monooxygen donors, appear as an alternative to produce metabolites from biological active compounds. This reaction may mimic the oxidation and oxygenation reactions of cytochrome P450 (CYP450) enzymes upon various drugs and biologically active compounds. Acridines represent a well-known group of polyaromatic compounds capable of acting as DNA intercalating agents. Viewing to search for new anticancer agents, one promising new acridine, the 5-acridin-9-ylmethylene-3-(4-methyl-benzyl)-thiazolidine-2,4-dione (AC04) (2), has been studied by our group and the in vitro metabolism was investigated in this work, aiming to advance in the pre-clinical pharmacokinetic investigation. A systematic investigation of the gas-phase reaction, supported by computational chemistry, of the AC04 (2) was studied to help the structure elucidation of possible in vivo metabolites. To confirm the methodology, the oxidized product was obtained in large scale for NMR analysis and the data confirmed the structure. In addition, AC04 (2) was submitted to an in vitro metabolism assay employing rat liver microsomes and also, a pilot study was conducted in rats after AC04 intravenous (i.v.) dosing of 1.5 mg/kg. A single oxidized product was obtained from microsomal metabolism and detected in rat plasma by liquid chromatography-tandem mass spectrometry (LC-MS/MS) analysis corresponding to the same product formed by Jacobsen-catalyzed reaction. These results indicate that Jacobsen oxidation reactions, combined with in vitro metabolism assays employing isolated microsomes, might replace some in vivo metabolism studies, thus reducing the use of animals in new chemical entities pre-clinical investigation.
机译:在单氧供体的存在下,雅各布森试剂似乎是从生物活性化合物生产代谢产物的替代方法。该反应可以模拟细胞色素P450(CYP450)酶对各种药物和生物活性化合物的氧化和氧化反应。 cr啶代表一组熟知的能够用作DNA嵌入剂的多芳族化合物。为了寻找新的抗癌药,有人研究了一种有前途的新a啶,即5-ac啶-9-9-基亚甲基-3-(4-甲基-苄基)-噻唑烷-2,4-二酮(AC04)(2)。我们小组和这项工作的体外代谢进行了研究,旨在推进临床前药代动力学研究。在计算化学的支持下,对气相反应的系统研究进行了系统研究(2),以帮助阐明可能的体内代谢物的结构。为了证实该方法,大规模获得了氧化产物用于NMR分析,并且数据证实了结构。另外,AC04(2)已进行了使用大鼠肝微粒体的体外代谢测定,并且还在AC04静脉内(i.v.)剂量为1.5 mg / kg后在大鼠中进行了初步研究。从微粒体代谢中获得了一种氧化产物,并通过液相色谱-串联质谱(LC-MS / MS)分析在大鼠血浆中检测到了相应于雅各布森催化反应形成的同一产物。这些结果表明,雅各布森氧化反应与采用分离的微粒体的体外代谢测定相结合,可能会取代一些体内代谢研究,从而减少动物在临床前新化学实体中的使用。

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