Fournier Véronique, Destaillats Frédéric, Hug Bernadette, Golay Pierre-Alain, Joffre Florent, Juanéda Pierre, Sémon Etienne, Dionisi Fabiola, Lambelet Pierre, Sébédio Jean-Louis, Berdeaux Olivier
UMR1129 FLAVIC, INRA, 17 rue Sully, B.P. 86510, 21000 Dijon, France.
J Chromatogr A. 2007 Jun 22;1154(1-2):353-9. doi: 10.1016/j.chroma.2007.03.099. Epub 2007 Mar 30.
Long-chain polyunsaturated fatty acids (LC-PUFAs) of the n-3 series and especially eicosapentaenoic and docosahexaenoic acids (EPA and DHA, respectively) have important biological properties. The main dietary sources of LC-PUFAs are fish and fish oil. Geometrical isomerization is one of the main reactions happening during the thermal treatment of polyunsaturated fatty acids. Refined fish oils are used to supplement food products in LC-PUFAs and the quality of these nutritional ingredients have to be controlled. In the present study, a suitable method for the quantification of EPA and DHA geometrical isomers in fish oils by gas-liquid chromatography (GC) is presented. A highly polar capillary column (CP-Sil 88, 100 m) operating under optimal conditions was used. Method selectivity was studied by GC-mass spectrometry. The performance characteristics of the quantification method were studied using samples of fish oil deodorized at 220 degrees C for 3 h. The linearity of the method was assessed by analyzing composite samples obtained by mixing fish oil deodorized at 220 degrees C with semi-refined fish oil (control). Precision was evaluated by analyzing the same samples in triplicate. Results showed that the validated method is suitable to quantify low amounts of geometrical (trans) isomers of EPA and DHA in refined fish oils. The limits of quantification of the EPA and DHA geometrical isomers are 0.16 and 0.56 g/100 g of fish oil, for EPA and DHA, respectively. Commercially available LC-PUFA oil samples were evaluated by using the validated method. The results show that the oils analyzed contain low amounts (<1% of total fatty acids) of geometrical isomers of EPA and DHA.
n-3系列长链多不饱和脂肪酸(LC-PUFA),尤其是二十碳五烯酸和二十二碳六烯酸(分别为EPA和DHA)具有重要的生物学特性。LC-PUFA的主要膳食来源是鱼类和鱼油。几何异构化是多不饱和脂肪酸热处理过程中发生的主要反应之一。精制鱼油用于补充含LC-PUFA的食品,这些营养成分的质量必须得到控制。在本研究中,提出了一种通过气液色谱法(GC)定量鱼油中EPA和DHA几何异构体的合适方法。使用了在最佳条件下运行的高极性毛细管柱(CP-Sil 88,100 m)。通过GC-质谱研究了方法的选择性。使用在220℃下脱臭3小时的鱼油样品研究了定量方法的性能特征。通过分析将在220℃下脱臭的鱼油与半精制鱼油(对照)混合得到的复合样品来评估该方法的线性。通过一式三份分析相同样品来评估精密度。结果表明,验证后的方法适用于定量精制鱼油中低含量的EPA和DHA几何(反式)异构体。EPA和DHA几何异构体的定量限分别为0.16和0.56 g/100 g鱼油。使用验证后的方法对市售LC-PUFA油样品进行了评估。结果表明,所分析的油中EPA和DHA几何异构体的含量较低(<总脂肪酸的1%)。