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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis, biological investigation and molecular docking study of N-malonyl-1,2-dihydroisoquinoline derivatives as brain specific and shelf-stable MAO inhibitors
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Synthesis, biological investigation and molecular docking study of N-malonyl-1,2-dihydroisoquinoline derivatives as brain specific and shelf-stable MAO inhibitors

机译:N-丙二酰基-1,2-二氢异喹啉衍生物作为脑特异性和货架稳定的MAO抑制剂的合成,生物学研究和分子对接研究

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A group of N-malonyl-1,2-dihydroisoquinoline derivatives were synthesized and investigated as brain specific and shelf-stable MAO inhibitors. N-malonyl-1,2-dihydroisoquinoline redox carrier system was linked through amidic bond to 4-chloro and 4-nitrobenzylidenehydrazines (9a-b), as monoamine oxidase inhibitors (MAOIs), and beta-phenethylamine (14), as a model drug, to afford a novel group of N-malonyl-1,2-dihydroisoquinoline chemical delivery systems (DHIQCDSs) (13a-b and 18). These systems are expected to be stable against air oxidation due to the presence of the carbonyl group close to nitrogen of the dihydroisoquinoline. The synthesized DHIQCDS (18) was subjected to various chemical and biological investigations to evaluate its stability and prove its ability to cross the blood brain barrier and "lock-in" the brain. The in vitro chemical and enzymatic oxidation studies showed reasonable stability and adequate rate of conversion of DHIQCDS (18) to its corresponding quaternary metabolites. In vivo distribution study in rats revealed preferential concentration of the active moiety in the brain. Moreover, compounds (9a-b, 12a-b and 17) were screened for their in vitro MAO inhibitory activity compared to clorgyline as a reference compound. The inhibition profile was found to be competitive for both MAO-A and MAO-B isozymes with more selectivity toward MAO-A. Molecular docking study of compounds (9a-b, 12a-b and 17) and the suggested metabolites was carried out on both MAO-A and MAO-B isozymes. Observation of the docked poses revealed many interactions with many residues previously reported to have an effect on the inhibition of MAO enzyme. (C) 2015 Published by Elsevier Masson SAS.
机译:合成了一组N-丙二酰基-1,2-二氢异喹啉衍生物,并作为脑特异性和货架稳定的MAO抑制剂进行了研究。 N-丙二酰基-1,2-二氢异喹啉氧化还原载体系统通过酰胺键与作为单胺氧化酶抑制剂(MAOIs)和β-苯乙胺(14)的4-氯和4-硝基苄叉肼(9a-b)连接药物,以提供一组新的N-丙二酰基-1,2-二氢异喹啉化学传递系统(DHIQCDS)(13a-b和18)。由于存在靠近二氢异喹啉的氮的羰基,预期这些系统对空气氧化是稳定的。对合成的DHIQCDS(18)进行了各种化学和生物学研究,以评估其稳定性并证明其穿越血脑屏障和“锁定”大脑的能力。体外化学和酶促氧化研究表明DHIQCDS(18)转化为其相应的季铵盐代谢物具有合理的稳定性和足够的转化率。在大鼠体内的分布研究表明,大脑中活性成分的优先浓度较高。此外,与作为参考化合物的高粱碱相比,筛选了化合物(9a-b,12a-b和17)的体外MAO抑制活性。发现抑制曲线对于MAO-A和MAO-B同工酶都具有竞争性,并且对MAO-A具有更高的选择性。对MAO-A和MAO-B同工酶进行了化合物(9a-b,12a-b和17)与建议的代谢物的分子对接研究。观察停靠的姿势揭示了与许多先前报道对抑制MAO酶有影响的残基的许多相互作用。 (C)2015由Elsevier Masson SAS发布。

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