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首页> 外文期刊>Bioorganic and medicinal chemistry >Synthesis and phosphodiesterase 5 inhibitory activity of new 5-phenyl-1,6-dihydro-7H-pyrazolo(4,3-d)pyrimidin-7-one derivatives containing an N-acylamido group phenyl ring.
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Synthesis and phosphodiesterase 5 inhibitory activity of new 5-phenyl-1,6-dihydro-7H-pyrazolo(4,3-d)pyrimidin-7-one derivatives containing an N-acylamido group phenyl ring.

机译:新的5-苯基-1,6-二氢-7H-吡唑并(4,3-d)嘧啶-7-含有N-酰基酰胺基苯环的衍生物的合成及其磷酸二酯酶5的抑制活性。

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摘要

New sildenafil analogues with an N-acylamido group at the 5'-position of the phenyl ring, 6a--e, were prepared from the readily available starting compound 2 in four straightforward steps. Enzyme assays demonstrated that all the target compounds 6a-e showed higher PDE5 inhibitory activities than sildenafil. It was observed that the PDE5 inhibitory activity was enhanced as the chain length of R group increased, but introduction of the branched alkyl groups such as isopropyl (6d) and cyclohexyl (6e) resulted in the drop of potency compared with 6c. In particular the N-butyrylamido derivative 6c exhibited the highest PDE5 inhibitory activity, and was about 6-fold more potent than sildenafil. However, all the compounds exhibited somewhat weak selectivity (1--3-fold) over PDE6, indicating that the compounds 6a--e have intrinsically lower selectivity than sildenafil.
机译:在四个简单的步骤中,由容易获得的起始化合物2制备了在苯环5a-e的5'-位具有N-酰基酰胺基的新西地那非类似物。酶分析表明,所有目标化合物6a-e均显示比西地那非更高的PDE5抑制活性。观察到,随着R基团的链长度增加,PDE5抑制活性增强,但是与6c相比,引入支链烷基如异丙基(6d)和环己基(6e)导致效力下降。特别地,N-丁酰酰胺基衍生物6c表现出最高的PDE5抑制活性,并且效力比西地那非高约6倍。但是,所有化合物都显示出比PDE6稍弱的选择性(1-3倍),表明化合物6a-e本质上比西地那非具有更低的选择性。

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