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Powder crystallography of pharmaceutical materials by combined crystal structure prediction and solid-state ~1H NMR spectroscopy

机译:通过组合晶体结构预测和固态〜1H NMR光谱对药物材料进行粉末晶体学

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摘要

A protocol for the ab initio crystal structure determination of powdered solids at natural isotopic abundance by combining solid-state NMR spectroscopy, crystal structure prediction, and DFT chemical shift calculations was evaluated to determine the crystal structures of four small drug molecules: cocaine, flutamide, flufenamic acid, and theophylline. For cocaine, flutamide and flufenamic acid, we find that the assigned ~1H isotropic chemical shifts provide sufficient discrimination to determine the correct structures from a set of predicted structures using the root-mean-square deviation (rmsd) between experimentally determined and calculated chemical shifts. In most cases unassigned shifts could not be used to determine the structures. This method requires no prior knowledge of the crystal structure, and was used to determine the correct crystal structure to within an atomic rmsd of less than 0.12 A with respect to the known reference structure. For theophylline, the NMR spectra are too simple to allow for unambiguous structure selection.
机译:通过将固态NMR光谱,晶体结构预测和DFT化学位移计算相结合,评估了在自然同位素丰度下从头算粉状固体的从头算晶体结构的方案,从而确定了四个小药物分子的晶体结构:可卡因,氟他胺,氟芬那酸和茶碱。对于可卡因,氟他胺和氟芬那酸,我们发现分配的〜1H各向同性化学位移可提供充分的判别力,从而使用实验确定的和计算的化学位移之间的均方根偏差(rmsd)从一组预测的结构中确定正确的结构。在大多数情况下,未分配的班次无法用于确定结构。该方法不需要晶体结构的先验知识,并且用于确定正确的晶体结构,以使其相对于已知参考结构的原子均方根值小于0.12A。对于茶碱,NMR光谱太简单,无法进行明确的结构选择。

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