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以己烷中的乙腈为溶剂,采用低温银离子高效液相色谱法分析三酰甘油和脂肪酸异构体:该方法的局限性

Analysis of triacylglycerol and fatty acid isomers by low-temperature silver-ion high performance liquid chromatography with acetonitrile in hexane as solvent: limitations of the methodology.

作者信息

Adlof R

机构信息

Food and Industrial Oil Research, National Center for Agricultural Utilization Research, USDA, Agricultural Research Service, Peoria, IL 61604, USA.

出版信息

J Chromatogr A. 2007 May 4;1148(2):256-9. doi: 10.1016/j.chroma.2007.03.070. Epub 2007 Mar 21.

Abstract

Silver ion HPLC (Ag-HPLC), utilizing columns containing silver ions bonded to a silica substrate and acetonitrile in hexane as solvent, has proven to be a powerful technology for the analysis of geometric (cis or trans) or positional fatty acids, fatty acid ester (primarily methyl ester; FAME), or triacylglycerol (TAG) isomers. Previous studies had demonstrated that, unlike gas chromatography, samples eluted more rapidly at lower temperatures (at 20 degrees C versus 40 degrees C, for example). A low-temperature bath [dual-column Ag-HPLC; isocratic solvent systems of 0.3 to 0.7% acetonitrile (ACN) in hexane] was utilized to study the application of this system at low (below 0 degrees C) temperatures for analysis of FAME (zero to six double bonds) and TAG [SSS, OOO and LLL, where S=stearic acid (18:0), O=oleic acid (9c-18:1), and L=linoleic acid (9c, 12c-18:2)] standards. While FAME elution times continued to decrease from 0 degrees C to -10 degrees C, they began to increase at -20 degrees C. A similar situation was noted for the TAG isomers, except that retention times began to increase below 0 degrees C. The lower temperature limit of the Ag-HPLC/ACN in hexane system is thus ca. -25 degrees C. Increasing sample elution times and pump head pressures upon sample injection were noted at temperatures of -25 degrees C to -40 degrees C. Equilibration times at each temperature could be reduced to ca. 15 min without loss of resolution and with retention times of +/-2%. Temperature, rather than solvent composition, can therefore be utilized with the Ag-HPLC/ACN in hexane solvent system to optimize elution times and resolution(s) of FAME and TAG isomers.

摘要

银离子高效液相色谱法(Ag-HPLC)使用的柱子中,银离子键合在硅胶基质上,并以己烷中的乙腈作为溶剂,已被证明是一种用于分析几何(顺式或反式)或位置脂肪酸、脂肪酸酯(主要是甲酯;FAME)或三酰甘油(TAG)异构体的强大技术。先前的研究表明,与气相色谱不同,样品在较低温度下洗脱更快(例如在20℃与40℃相比)。使用低温浴[双柱Ag-HPLC;己烷中0.3%至0.7%乙腈(ACN)的等度溶剂系统]来研究该系统在低温(低于0℃)下用于分析FAME(零至六个双键)和TAG[SSS、OOO和LLL,其中S=硬脂酸(18:)、O=油酸(9c-18:1)和L=亚油酸(9c,12c-18:2)]标准品的应用。虽然FAME的洗脱时间从0℃持续降低到-10℃,但在-20℃时开始增加。TAG异构体也观察到类似情况,只是保留时间在低于0℃时开始增加。因此,己烷系统中Ag-HPLC/ACN的低温极限约为-25℃。在-25℃至-40℃的温度下,注意到进样时样品洗脱时间增加和泵头压力升高。每个温度下的平衡时间可缩短至约15分钟,而不会损失分离度,保留时间的偏差为±2%。因此,在己烷溶剂系统中的Ag-HPLC/ACN中,可以利用温度而非溶剂组成来优化FAME和TAG异构体的洗脱时间和分离度。

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