Sachleben Joseph R, Yi Ruiyang, Volden Paul A, Conzen Suzanne D
Biomolecular NMR Core Facility, Biological Sciences Division, The University of Chicago, Chicago, IL, 60637, USA,
J Biomol NMR. 2014 Jul;59(3):161-73. doi: 10.1007/s10858-014-9836-0. Epub 2014 May 15.
Quantifying the amounts and types of lipids present in mixtures is important in fields as diverse as medicine, food science, and biochemistry. Nuclear magnetic resonance (NMR) spectroscopy can quantify the total amounts of saturated and unsaturated fatty acids in mixtures, but identifying the length of saturated fatty acid or the position of unsaturation by NMR is a daunting challenge. We have developed an NMR technique, aliphatic chain length by isotropic mixing, to address this problem. Using a selective total correlation spectroscopy technique to excite and transfer magnetization from a resolved resonance, we demonstrate that the time dependence of this transfer to another resolved site depends linearly on the number of aliphatic carbons separating the two sites. This technique is applied to complex natural mixtures allowing the identification and quantification of the constituent fatty acids. The method has been applied to whole adipocytes demonstrating that it will be of great use in studies of whole tissues.
对混合物中脂质的数量和种类进行定量,在医学、食品科学和生物化学等诸多领域都很重要。核磁共振(NMR)光谱法可以对混合物中饱和脂肪酸和不饱和脂肪酸的总量进行定量,但通过NMR确定饱和脂肪酸的长度或不饱和度的位置是一项艰巨的挑战。我们开发了一种NMR技术,即通过各向同性混合确定脂肪链长度,以解决这一问题。利用选择性全相关光谱技术激发并转移来自已分辨共振的磁化强度,我们证明这种转移到另一个已分辨位点的时间依赖性与分隔这两个位点的脂肪族碳原子数呈线性关系。该技术应用于复杂的天然混合物,能够鉴定和定量其中的组成脂肪酸。该方法已应用于完整的脂肪细胞,表明它在全组织研究中将有很大用途。