Vilén Eric Morssing, Klinger Markus, Sandström Corine
Department of Chemistry, Swedish University of Agricultural Sciences, 750 07 Uppsala, Sweden.
Magn Reson Chem. 2011 Sep;49(9):584-91. doi: 10.1002/mrc.2789. Epub 2011 Aug 4.
Alginate is a linear copolymer of 1-4 linked β-D-mannuronic acid (M) and 1-4 linked α-L-guluronic acid (G). The physical properties of these polysaccharides such as gel properties and viscosity are largely correlated to the monomer composition (M/G ratio), the sequence of the polymer and the molecular weight. Determination of the M/G ratio is therefore important and NMR spectroscopy is among the most common methods used to accurately obtain this ratio. Instead of using time consuming, possibly sample altering, acid hydrolysis to reduce the viscosity of the alginate sample prior to analysis, samples of low concentrations can be used. However, this results in a water peak in the NMR spectrum that is several orders of magnitude larger than the alginate signals and water suppression is required. In this article, a diffusion-edited NMR experiment that suppresses the water peak while retaining the signals of interest has been used to enable correct M/G ratio determination. This approach exploits the difference in translational diffusion between the larger alginate molecules and the smaller water molecules. Using this method, the monomer composition of 20 different alginate powders was determined. The diffusion parameters were optimized to allow measurement for samples covering a large range of M/G ratios and viscosities. Thus, such method should be useful for analyzing large numbers of unknown alginate samples using, for example, automation procedures.
海藻酸盐是由1-4连接的β-D-甘露糖醛酸(M)和1-4连接的α-L-古洛糖醛酸(G)组成的线性共聚物。这些多糖的物理性质,如凝胶性质和粘度,在很大程度上与单体组成(M/G比)、聚合物序列和分子量相关。因此,测定M/G比很重要,核磁共振光谱法是用于准确获得该比值的最常用方法之一。在分析之前,无需使用耗时且可能改变样品的酸水解来降低海藻酸盐样品的粘度,而是可以使用低浓度样品。然而,这会导致核磁共振谱中的水峰比海藻酸盐信号大几个数量级,因此需要进行水抑制。在本文中,一种扩散编辑的核磁共振实验被用于抑制水峰同时保留感兴趣的信号,从而能够正确测定M/G比。这种方法利用了较大的海藻酸盐分子和较小的水分子之间平移扩散的差异。使用这种方法,测定了20种不同海藻酸盐粉末的单体组成。优化了扩散参数,以便对涵盖广泛M/G比和粘度范围的样品进行测量。因此,这种方法对于使用例如自动化程序分析大量未知海藻酸盐样品应该是有用的。