Nicholson J K, Foxall P J, Spraul M, Farrant R D, Lindon J C
Department of Chemistry, Birkbeck College, University of London, U.K.
Anal Chem. 1995 Mar 1;67(5):793-811. doi: 10.1021/ac00101a004.
High-resolution 750 MHz 1H NMR spectra of control human blood plasma have been measured and assigned by the concerted use of a range of spin-echo, two-dimensional J-resolved, and homonuclear and heteronuclear (1H-13C) correlation methods. The increased spectral dispersion and sensitivity at 750 MHz enable the assignment of numerous 1H and 13C resonances from many molecular species that cannot be detected at lower frequencies. This work presents the most comprehensive assignment of the 1H NMR spectra of blood plasma yet achieved and includes the assignment of signals from 43 low M(r) metabolites, including many with complex or strongly coupled spin systems. New assignments are also provided from the 1H and 13C NMR signals from several important macromolecular species in whole blood plasma, i.e., very-low-density, low-density, and high-density lipoproteins, albumin, and alpha 1-acid glycoprotein. The temperature dependence of the one-dimensional and spin-echo 750 MHz 1H NMR spectra of plasma was investigated over the range 292-310 K. The 1H NMR signals from the fatty acyl side chains of the lipoproteins increased substantially with temperature (hence also molecular mobility), with a disproportionate increase from lipids in low-density lipoprotein. Two-dimensional 1H-13C heteronuclear multiple quantum coherence spectroscopy at 292 and 310 K allowed both the direct detection of cholesterol and choline species bound in high-density lipoprotein and the assignment of their signals and confirmed the assignment of most of the lipoprotein resonances.
通过协同使用一系列自旋回波、二维J分辨以及同核和异核(1H-13C)相关方法,已测量并归属了对照人血浆的高分辨率750 MHz 1H NMR谱。750 MHz时增加的谱分散度和灵敏度使得能够归属许多在较低频率下无法检测到的分子种类的众多1H和13C共振。这项工作给出了迄今所实现的最全面的血浆1H NMR谱归属,包括来自43种低相对分子质量代谢物的信号归属,其中许多代谢物具有复杂或强耦合自旋系统。还给出了全血浆中几种重要大分子种类(即极低密度脂蛋白、低密度脂蛋白和高密度脂蛋白、白蛋白和α1-酸性糖蛋白)的1H和13C NMR信号的新归属。研究了血浆的一维和自旋回波750 MHz 1H NMR谱在292 - 310 K范围内的温度依赖性。脂蛋白脂肪酰侧链的1H NMR信号随温度显著增加(因此分子流动性也增加),低密度脂蛋白中的脂质增加比例不成比例。在292和310 K下的二维1H-13C异核多量子相干光谱既允许直接检测高密度脂蛋白中结合的胆固醇和胆碱种类并归属其信号,又证实了大多数脂蛋白共振的归属。