Damen Carola W N, Isaac Giorgis, Langridge James, Hankemeier Thomas, Vreeken Rob J
Netherlands Metabolomics Centre Leiden University, 2300 RA Leiden, The Netherlands Division of Analytical Biosciences, Leiden Academic Centre for Drug Research, Leiden University, 2300 RA Leiden, The Netherlands.
Waters Corporation, Milford, MA 01757.
J Lipid Res. 2014 Aug;55(8):1772-83. doi: 10.1194/jlr.D047795. Epub 2014 Jun 2.
An ultraperformance LC (UPLC) method for the separation of different lipid molecular species and lipid isomers using a stationary phase incorporating charged surface hybrid (CSH) technology is described. The resulting enhanced separation possibilities of the method are demonstrated using standards and human plasma extracts. Lipids were extracted from human plasma samples with the Bligh and Dyer method. Separation of lipids was achieved on a 100 × 2.1 mm inner diameter CSH C18 column using gradient elution with aqueous-acetonitrile-isopropanol mobile phases containing 10 mM ammonium formate/0.1% formic acid buffers at a flow rate of 0.4 ml/min. A UPLC run time of 20 min was routinely used, and a shorter method with a 10 min run time is also described. The method shows extremely stable retention times when human plasma extracts and a variety of biofluids or tissues are analyzed [intra-assay relative standard deviation (RSD) <0.385% and <0.451% for 20 and 10 min gradients, respectively (n = 5); interassay RSD <0.673% and <0.763% for 20 and 10 min gradients, respectively (n = 30)]. The UPLC system was coupled to a hybrid quadrupole orthogonal acceleration time-of-flight mass spectrometer, equipped with a traveling wave ion-mobility cell. Besides demonstrating the separation for different lipids using the chromatographic method, we demonstrate the use of the ion-mobility MS platform for the structural elucidation of lipids. The method can now be used to elucidate structures of a wide variety of lipids in biological samples of different matrices.
本文描述了一种超高效液相色谱(UPLC)方法,该方法使用包含带电表面杂化(CSH)技术的固定相来分离不同的脂质分子种类和脂质异构体。使用标准品和人血浆提取物证明了该方法增强的分离可能性。采用布莱和戴尔方法从人血浆样品中提取脂质。在100×2.1mm内径的CSH C18柱上,使用含10mM甲酸铵/0.1%甲酸缓冲液的水-乙腈-异丙醇流动相进行梯度洗脱,流速为0.4ml/min,实现脂质分离。常规使用20分钟的UPLC运行时间,还描述了一种运行时间为10分钟的更短方法。当分析人血浆提取物以及各种生物流体或组织时,该方法显示出极其稳定的保留时间[20分钟和10分钟梯度的批内相对标准偏差(RSD)分别<0.385%和<0.451%(n = 5);20分钟和10分钟梯度的批间RSD分别<0.673%和<0.763%(n = 30)]。UPLC系统与配备行波离子迁移池的混合四极杆正交加速飞行时间质谱仪联用。除了用色谱法展示不同脂质的分离外,我们还展示了使用离子迁移质谱平台对脂质进行结构解析。该方法现在可用于阐明不同基质生物样品中多种脂质的结构。