Molecular dynamics of fibric acids.

Chad Miller, Steven Schildcrout, Howard Mettee, Ganesaratnam Balendiran
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Abstract

1H- and 13C-NMR chemical shifts were measured for four fibric acids (bezafibrate, clofibric acid, fenofibric acid, and gemfibrozil), which are lipid-lowering drugs. Correlation is found with DFT-computed chemical shifts from the conformational analysis. Equilibrium populations of optimized conformers at 298 K are very different when based on computed Gibbs energies rather than on potential energies. This is due to the significant entropic advantages of extended rather than bent conformational shapes. Abundant conformers with intramolecular hydrogen bonding via five-member rings are computed for three fibric acids, but not gemfibrozil, which lacks suitable connectivity of carboxyl and phenoxy groups. Trends in computed atom-positional deviations, molecular volumes, surface areas, and dipole moments among the fibric acids and their constituent conformations indicate that bezafibrate has the greatest hydrophilicity and fenofibric acid has the greatest flexibility. Theoretical and experimental comparison of chemical shifts of standards with sufficient overlap of fragments containing common atoms, groups, and connectivity may provide a reliable minimal set to benchmark and generate leads.

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纤维酸的分子动力学。
测定了四种降脂药物纤维酸(贝扎布酸、克罗布酸、非诺布酸和吉非菲齐)的1H- nmr和13C-NMR化学位移。从构象分析中发现了与dft计算的化学位移的相关性。当基于计算的吉布斯能而不是基于势能时,优化的构象在298 K时的平衡居数有很大的不同。这是由于扩展构象形状比弯曲构象形状具有显著的熵优势。结果表明,三种纤维酸具有丰富的通过五元环形成分子内氢键的构象,但由于缺乏羧基和苯氧基的适当连接,吉布齐尔没有形成构象。纤维酸及其组成构象之间的计算原子位置偏差、分子体积、表面积和偶极矩的趋势表明,贝扎布酸具有最大的亲水性,而非诺布酸具有最大的柔韧性。理论和实验比较标准的化学位移与包含共同原子,基团和连接性的碎片的足够重叠可以提供一个可靠的最小集基准和产生引线。
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