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Quinazolinones, Quinazolinthiones, and Quinazolinimines as Nitric Oxide Synthase Inhibitors: Synthetic Study and Biological Evaluation

机译:一氧化氮合酶抑制剂喹唑啉酮,喹唑啉硫酮和喹唑啉亚胺的合成研究与生物学评价

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摘要

The synthesis of different compounds with a quinazolinone, quinazolinthione, or quinazolinimine skeleton and their in vitro biological evaluation as inhibitors of inducible and neuronal nitric oxide synthase (iNOS and nNOS) isoforms are described. These derivatives were obtained from substituted 2-aminobenzylamines, using diverse cyclization procedures. Furthermore, the diamines were synthesized by two routes: A conventional pathway and an efficient one-pot synthesis in a continuous-flow hydrogenator. The structures of these heterocycles were confirmed by H-1 and C-13 nuclear magnetic resonance and high-resolution mass spectroscopy data. The structure-activity relationships of the target molecules are discussed in terms of the effects of both the R radical and the X heteroatom in the 2-position. In general, the assayed compounds behave as better iNOS than nNOS inhibitors, with the quinazolinone 11e being the most active inhibitor of all tested compounds and the most iNOSNOS selective one.
机译:描述了具有喹唑啉酮,喹唑啉硫酮或喹唑啉亚胺骨架的不同化合物的合成及其作为诱导型和神经型一氧化氮合酶(iNOS和nNOS)同工型抑制剂的体外生物学评估。这些衍生物是使用不同的环化方法从取代的2-氨基苄基胺获得的。此外,通过两种途径合成二胺:常规途径和在连续流氢化器中有效的一锅法合成。这些杂环的结构由H-1和C-13核磁共振以及高分辨率质谱数据证实。根据R基和X杂原子在2-位上的作用,讨论了靶分子的结构-活性关系。通常,被测化合物的iNOS行为要比nNOS抑制剂好,喹唑啉酮11e是所有测试化合物中活性最高的抑制剂,也是iNOS / nNOS选择性最强的抑制剂。

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