Redden P R, Lin X, Horrobin D F
Efamol Research Inc., Kentville, Nova Scotia, Canada.
Chem Phys Lipids. 1996 Jan 25;79(1):9-19. doi: 10.1016/0009-3084(95)02502-2.
There is increasing evidence that the fatty acid, gamma-linolenic acid (GLA) is the effective component found in evening primrose oil (EPO) which has been shown to bring about clinical improvement in a number of disease conditions. The two major triacylglycerols (TAGs) in EPO are trilinolein (LLL) and a TAG species containing one GLA and two linoleic (LA) fatty acid chains. This latter TAG, called dilinoleoyl-mono-gamma-linolenin (DLMG or Oenotheral), makes up about 15% by weight of EPO and accounts for over one-half of the total amount of GLA present in EPO. Although DLMG is comprised of three possible isomers, the abbreviation is used to represent the naturally occurring mixture of these isomers. We have isolated DLMG from EPO and also prepared its three possible isomers, sn-GLL, sn-LGL and sn-LLG, and carried out the sn-2 positional analysis using three different approaches, namely, Grignard deacylation TLC and HPLC methods and high resolution 13C-NMR spectroscopy. The results of the sn-2 positional analysis for both the natural and synthetic TAGs containing LA and GLA in this study using the three approaches are all in very good agreement. This indicates that the three positional analysis methods are valid within their acceptable error margin and can be used with confidence in determining the fatty acid composition of the sn-2 position. Given the increased availability of NMR spectrometers this method might prove to be the easiest and most convenient in determining the sn-2 position for oil or TAG samples that contain a small number of different fatty acids providing all the 13C-NMR carbonyl resonances are well resolved.
越来越多的证据表明,脂肪酸γ-亚麻酸(GLA)是月见草油(EPO)中的有效成分,已证明其在多种疾病状况下能带来临床改善。EPO中的两种主要三酰甘油(TAGs)是三亚油酸甘油酯(LLL)和一种含有一个GLA和两个亚油酸(LA)脂肪酸链的TAG种类。后一种TAG,称为二亚油酰-单-γ-亚麻酸甘油酯(DLMG或月见草精),占EPO重量的约15%,占EPO中GLA总量的一半以上。尽管DLMG由三种可能的异构体组成,但该缩写用于表示这些异构体的天然混合物。我们已从EPO中分离出DLMG,并制备了其三种可能的异构体,即sn-GLL、sn-LGL和sn-LLG,并使用三种不同方法进行了sn-2位分析,即格氏脱酰基TLC和HPLC方法以及高分辨率13C-NMR光谱法。本研究中使用这三种方法对含有LA和GLA的天然和合成TAGs进行的sn-2位分析结果非常一致。这表明这三种位置分析方法在其可接受的误差范围内是有效的,并且可以放心地用于确定sn-2位的脂肪酸组成。鉴于NMR光谱仪的可用性增加,如果所有13C-NMR羰基共振都能很好地分辨,那么这种方法可能被证明是确定含有少量不同脂肪酸的油或TAG样品的sn-2位最简单、最方便的方法。