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采用等度流动相的三酰甘油区域异构体的快速非水反相液相色谱分离。应用于不同油脂。

Fast non-aqueous reversed-phase liquid chromatography separation of triacylglycerol regioisomers with isocratic mobile phase. Application to different oils and fats.

作者信息

Tamba Sompila Arnaud W G, Héron Sylvie, Hmida Dorra, Tchapla Alain

机构信息

Lip(Sys)², LETIAM, Univ. Paris-Sud, Université Paris-Saclay, IUT d'Orsay, Plateau de Moulon, F-91400, Orsay, France.

Lip(Sys)², LETIAM, Univ. Paris-Sud, Université Paris-Saclay, IUT d'Orsay, Plateau de Moulon, F-91400, Orsay, France.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2017 Jan 15;1041-1042:151-157. doi: 10.1016/j.jchromb.2016.12.030. Epub 2016 Dec 21.

Abstract

The distribution of fatty acid species at the sn-1/3 position or the sn-2 position of triacylglycerols (TAGs) in natural fats and oils affects their physical and nutritional properties. In fats and oils, determining the presence of one or two regioisomers and the identification of structure, where they do have one, as well as their separation, became a problem of fundamental importance to solve. A variety of instrumental technics has been proposed, such as MS, chromatography-MS or pure chromatography. A number of studies deal with the optimization of the separation, but very often, they are expensive in time. In the present study, in order to decrease the analysis time while maintaining good chromatographic separation, we tested different monomeric and polymeric stationary phases and different chromatographic conditions (mobile phase composition and analysis temperature) using Non-Aqueous Reversed Phase Liquid Chromatography (NARP-LC). It was demonstrated that mixed polymeric stationary bonded silica with accessible terminal hydroxyl groups leads to very good separation for the pairs of TAGs regioisomers constituted by two saturated and one unsaturated fatty acid (with double bond number: from 1 to 6). A Nucleodur C18 ISIS percolated by isocratic mobile phase (acetonitrile/2-propanol) at 18°C leads to their separations in less than 15min. The difference of retention times between two regioisomers XYX and XXY are large enough to confirm, as application, the presence of POP, SOP, SOS and PLP and no PPO, SPO, SSO and PPL in Theobroma cacao butter. In the same way, this study respectively shows the presence of SOS, SOP and no SSO, PSO in Butyrospermum parkii butter, POP, SOP, SOS and no PPO, PSO and SSO in Carapa oil and finally POP and no PPO in Pistacia Lentiscus oil.

摘要

天然油脂中三酰甘油(TAGs)的sn-1/3位或sn-2位脂肪酸种类的分布会影响其物理和营养特性。在油脂中,确定一种或两种区域异构体的存在、鉴定其结构(如果存在的话)以及将它们分离,成为了一个亟待解决的至关重要的基础问题。人们已经提出了多种仪器技术,如质谱(MS)、色谱-质谱联用或单纯的色谱法。许多研究致力于优化分离过程,但它们往往耗时较长。在本研究中,为了在保持良好色谱分离效果的同时减少分析时间,我们使用非水反相液相色谱(NARP-LC)测试了不同的单体和聚合物固定相以及不同的色谱条件(流动相组成和分析温度)。结果表明,具有可及末端羟基的混合聚合物键合硅胶对由两种饱和脂肪酸和一种不饱和脂肪酸(双键数为1至6)组成的TAGs区域异构体对具有非常好的分离效果。在18°C下用等度流动相(乙腈/2-丙醇)渗透的Nucleodur C18能在不到15分钟内将它们分离。两种区域异构体XYX和XXY之间的保留时间差异足够大,足以证实作为应用实例,可可脂中存在POP、SOP、SOS和PLP,而不存在PPO、SPO、SSO和PPL。同样,本研究分别表明,牛油果脂中存在SOS、SOP,不存在SSO、PSO;加拉巴木油中存在POP、SOP、SOS,不存在PPO、PSO和SSO;最后,乳香黄连木油中存在POP,不存在PPO。

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