首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular and Vibrational Dynamics in the Cholesterol-Lowering Agent Lovastatin: Solid-State NMR, Inelastic Neutron Scattering, and Periodic DFT Study
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Molecular and Vibrational Dynamics in the Cholesterol-Lowering Agent Lovastatin: Solid-State NMR, Inelastic Neutron Scattering, and Periodic DFT Study

机译:胆固醇降解剂Lovastatin中的分子和振动动力学:固态NMR,非弹性中子散射和周期性DFT研究

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摘要

Molecular and vibrational dynamics of a widely used cholesterol-lowering agent, lovastatin, have been studied by combining nuclear magnetic resonance relaxation experiments (H-1 NMR) with inelastic neutron scattering (INS) and periodic density functional theory modeling (plane-wave DFT). According to a complementary experimental study, lovastatin shows no phase transitions down to cryogenic conditions, while a progressive, stepwise activation of several molecular motions is observed below room temperature. The molecular packing and intermolecular forces were analyzed theoretically, supported by a C-13 NMR study and further correlated with observed molecular dynamics. The NMR relaxation experiments combined with theoretical calculations disclose that molecular dynamics in solid lovastatin is related to methyl group motions and conformational disorder in the methylbutanoate fragment. This is precisely assigned and analyzed quantitatively from both experimental and theoretical perspectives. The neutron vibrational spectroscopy further corroborates that the methyl rotors have a classical nature. In addition to the intramolecular reorientations, the vibrational dynamics was analyzed with an emphasis on the low-wavenumber range. For the first time, the terahertz response of lovastatin was studied by confronting neutron and optical techniques and clearly illustrating their complementarity. The consistent picture of the molecular dynamics is provided, which may support further considerations on alternative drug formulations and the amorphization tendency in this important lipid-lowering drug.
机译:通过将核磁共振弛豫实验(H-1 NMR)与无弹性中子散射(INS)和周期密度泛函理论建模(平面波DFT)组合,研究了广泛使用的胆固醇降低剂的分子和振动动力学研究了Lovastatin的广泛使用的胆固醇降低剂。 。根据互补实验研究,Lovastatin显示出低于室温的逐步过渡的阶段过渡,同时逐步地激活几种分子运动的逐步激活。理论上,通过C-13 NMR研究支持分子包装和分子间力,并与观察到的分子动力学进行进一步相关。与理论计算结合的NMR弛豫实验公开了固体洛伐他汀中的分子动力学与甲基丁醇酸甲酯片段中的甲基运动和构象紊乱有关。从实验和理论观点来看,这是精确分配和分析的。中子振动光谱进一步证实了甲基转子具有经典性质。除了分子内的重新定位之外,分析了振动动力学,并强调低波数范围。首次采用中子和光学技术研究了洛伐他汀的太赫兹响应,清楚地说明了它们的互补性。提供了分子动力学的一致图,这可以支持对替代药物制剂的进一步考虑和这种重要的降脂药物中的无形状趋势。

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