Institute of Molecules and Materials, Radboud University Nijmegen, Heyendaalseweg 135, 6525 AJ Nijmegen, The Netherlands.
Magn Reson Chem. 2011 May;49(5):221-30. doi: 10.1002/mrc.2737. Epub 2011 Mar 9.
Fluorinated steroids were examined using 1D and 2D homo- and heteronuclear (19)F NMR, such as (19)F-(1) H and (19)F-(13)C. The utilization of fluorine NMR accounted for spectral simplification and resulted in a straightforward pathway for the determination of structures including the configuration of these compounds; these steroids present an illustrative example for other types of fluorinated compounds, which are increasingly encountered in drug discovery. The potential of (19)F NMR is elaborated on in detail for two compounds containing diastereotopic fluorines with different coupling patterns. The analysis of the coupling patterns and the through-space interactions resulted in the determination of the structure and configuration. Heteronuclear correlation experiments, i.e. (19)F-(1)H HETCOR, (19)F-(13)C HMQC and HMBC, and (19)F-(1)H HOESY, were applied to determine first the relative stereochemistry and then the molecular configuration at C4 and C5 of a steroidal compound bearing a fused three-membered ring with two fluorine substituents. These examples proved (19)F NMR to be a useful addition to the extensively used (1)H and (13)C NMR within structure elucidation and configuration determination of small molecules.
氟代甾体化合物采用一维和二维同核和异核(19)F NMR 进行了研究,例如(19)F-(1)H 和(19)F-(13)C。氟核 NMR 的应用导致了谱图的简化,并为包括这些化合物的构型在内的结构的确定提供了直接的途径;这些甾体化合物为其他类型的氟代化合物提供了一个例证,在药物发现中越来越多地遇到了这些化合物。详细阐述了(19)F NMR 的潜力,其中包括两种含有不同偶合模式的非对映立体氟的化合物。通过对偶合模式和空间相互作用的分析,确定了结构和构型。应用异核相关实验,即(19)F-(1)H HETCOR、(19)F-(13)C HMQC 和 HMBC,以及(19)F-(1)H HOESY,首先确定了相对立体化学,然后确定了具有两个氟取代基的稠合三环化合物中 C4 和 C5 处的分子构型。这些实例证明(19)F NMR 在小分子的结构阐明和构型确定中是对广泛使用的(1)H 和(13)C NMR 的有益补充。