The Problem of Dynamic Process Manifestation in Identification of Organic Compounds by NMR Spectroscopy

N. E. Kuz’mina, S. Moiseev, A. I. Luttseva
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引用次数: 1

Abstract

The number, shape and position of NMR spectral lines depend on dynamic processes, and this creates certain difficulties in identification of pharmaceutical substances by NMR spectroscopy. The aim of the paper was to study instances of manifestation of intramolecular dynamic processes that affect identification of organic compounds by NMR, and to illustrate the potential of the methods used for their reduction, as well as associated problems.Materials and methods: 1H and 13C spectra of the following pharmaceutical substances: «buserelin acetate», «valsartan», «goserelin acetate», «iopromide», «clopidogrel hydrogensulfate», «omeprazole», «proroxan», «risperidone», «triptorelin acetate», and «enalapril maleate» were used to demonstrate negative effects of dynamic processes. The spatial structures of conformers were established by 1H-1H ROESY experiments. The quantum-chemical calculation of geometric and thermodynamic characteristics of different conformers was carried out by the PM3 method, and electronic characteristics—by the AM1 method with the help of the HyperChem software.Results: the authors analysed intramolecular dynamic processes which are most commonly encountered in expert work: pyramidal inversion of nitrogen in a heterocyclic compound (risperidone, proroxan, clopidogrel), rotation of molecular fragments around the amide bond (valsartan, iopromide, enalapril), prototropic rearrangements (buserelin, goserelin, omeprazole, triptorelin). The change in exchange rates was explained from the perspective of the change in the system of intra- and intermolecular nonvalent interactions.Conclusions: the use of traditional methods for increasing the rate of dynamic processes (increasing the temperature and changing the solvent) does not always eliminate the negative effects of intramolecular transformations. Methods of smoothing the spectral manifestations of dynamic processes have limited application due to strong intramolecular nonvalent interactions which prevent the conversion of the dynamic process rate into fast exchange. Experts and manufacturers should take into account the manifestation of dynamic processes during identification of pharmaceutical substances by NMR spectroscopy.
有机化合物核磁共振光谱鉴定中的动态过程表现问题
核磁共振谱线的数量、形状和位置取决于动态过程,这给核磁共振光谱鉴定原料药带来了一定的困难。本文的目的是研究影响核磁共振识别有机化合物的分子内动力学过程的表现实例,并说明用于减少它们的方法的潜力,以及相关的问题。材料和方法:用“醋酸布西林”、“缬沙坦”、“醋酸戈舍雷林”、“碘丙”、“硫酸氯吡格雷”、“奥美拉唑”、“普罗罗康”、“利培酮”、“醋酸雷普林”和“马来酸依那普利”等原料药的1H和13C光谱来证明动态过程的负面影响。通过1H-1H ROESY实验建立了构象的空间结构。在HyperChem软件的帮助下,用PM3方法计算了不同构象的几何和热力学特性,用AM1方法计算了电子特性。结果:作者分析了专家工作中最常见的分子内动力学过程:杂环化合物(利培酮、普罗罗康、氯吡格雷)中氮的金字塔型反转,分子片段围绕酰胺键的旋转(缬沙坦、碘丙胺、依那普利),原生重排(布赛林、戈舍雷林、奥美拉唑、雷公霉素)。从分子内和分子间非价相互作用体系变化的角度解释了交换率的变化。结论:使用传统方法来提高动态过程的速率(提高温度和改变溶剂)并不总是消除分子内转化的负面影响。平滑动态过程的光谱表现的方法应用有限,因为强烈的分子内非价相互作用阻止了动态过程速率转化为快速交换。专家和生产商在利用核磁共振波谱技术鉴定原料药时应考虑到动态过程的表现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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