Liu M, Nicholson J K, Parkinson J A, Lindon J C
Department of Chemistry, Birkbeck College, University of London, U.K.
Anal Chem. 1997 Apr 15;69(8):1504-9. doi: 10.1021/ac9612133.
The use of two-dimensional diffusion-edited total-correlation NMR spectroscopy (DETOCSY) to measure diffusion coefficients of molecules in biofluids is demonstrated. The method takes advantage of the increased peak dispersion in a two-dimensional spectrum and allows the measurement of diffusion coefficients of individual molecules in complex biofluid samples in a condition close to their natural state. The NMR spectra can be edited on the basis of diffusion coefficient, and hence, approximate molecular size and this provides a qualitative means of simplifying the spectra for assignment purposes. The use of two-dimensional DETOCSY NMR spectra increases the probability that the individual cross-peaks arise from single components and hence allows single-exponential fitting of the magnetic field gradient dependence of cross-peak volumes. Interpretation of the derived diffusion coefficients improves the NMR resonance assignment process in complex biofluid mixtures by giving additional information on the molecular size. The DETOCSY approach also provides information on small molecule-macromolecule interactions such as the binding of drugs or endogenous species to serum proteins such as albumin.
本文展示了使用二维扩散编辑全相关核磁共振波谱法(DETOCSY)来测量生物流体中分子的扩散系数。该方法利用了二维谱中峰分散度的增加,能够在接近分子自然状态的条件下,测量复杂生物流体样品中单个分子的扩散系数。核磁共振谱可根据扩散系数进行编辑,进而估算分子大小,这为简化谱图以便进行归属提供了一种定性方法。使用二维DETOCSY核磁共振谱增加了单个交叉峰源自单一成分的可能性,从而允许对交叉峰体积的磁场梯度依赖性进行单指数拟合。通过提供有关分子大小的额外信息,对导出的扩散系数进行解释可改善复杂生物流体混合物中的核磁共振共振归属过程。DETOCSY方法还提供了有关小分子 - 大分子相互作用的信息,例如药物或内源性物质与血清蛋白(如白蛋白)的结合。