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首页> 外文期刊>Zeitschrift fur Naturforschung, B. A Journal of Chemical Sciences >Invariom-based comparative electron density studies of iso-sildenafil and sildenafil
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Invariom-based comparative electron density studies of iso-sildenafil and sildenafil

机译:基于ISO-Sildenafil和Sildenafil的基于Invariom的比较电子密度研究

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摘要

The title compounds have raised considerable medical and broad public interest in that sildenafil is used as an agent against male erectile dysfunction; isosildenafil is not in clinical use. A comparison of their structural and electronic properties therefore seems of interest. The electron densities of iso-sildenafil and the cationic and neutral forms of sildenafil were examined by the application of the invariom formalism relying on diffraction data reported in the literature. The electrondensity distributions obtained were subjected to topological analysis using the quantum theory of atoms in molecules (QTAIM) formalism to yield bond topological and atomic properties. Moreover, molecular Hirshfeld surfaces and electrostatic potentials (ESPs) were calculated. A number of structural and electronic differences were thus identified between sildenafil and the iso-analog. In both sildenafil structures, the phenyl ring and the pyrazolopyrimidine fragment are practically coplanar (planar conformation), whereas in the iso-analog they exhibit an angle of 44 degrees (inclined form). Related to differences in molecular structure are completely different hydrogen bonding patterns and differences in the ESPs, the latter ones being influenced by different methylation at the pyrazolopyrimidine fragment. Iso-sildenafil is present as a hydrogen-bond dimer in the crystal, and the ESP of this dimer is dominated by a surrounding positive potential.
机译:标题化合物引起了相当大的医学和广泛的公众兴趣,因为西地那非被用作治疗男性勃起功能障碍的药物;异西地那非不在临床使用。因此,比较它们的结构和电子性质似乎很有意义。根据文献报道的衍射数据,应用不变量形式主义对异西地那非的电子密度以及西地那非的阳离子和中性形式进行了检验。使用分子中原子的量子理论(QTAIM)形式主义对获得的电密度分布进行拓扑分析,以获得键拓扑和原子性质。此外,还计算了分子Hirshfeld表面和静电势(ESP)。因此,在西地那非和iso类似物之间发现了许多结构和电子差异。在这两种西地那非结构中,苯环和吡唑并嘧啶片段实际上是共面的(平面构象),而在iso类似物中,它们呈现44度角(倾斜形式)。与分子结构差异相关的是完全不同的氢键模式和ESP的差异,后者受到吡唑并嘧啶片段不同甲基化的影响。异西地那非在晶体中以氢键二聚体的形式存在,该二聚体的ESP主要由周围的正电位控制。

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