Department of Food Science and Technology, University of California, Davis, California 95616, United States.
Anal Chem. 2012 Jul 17;84(14):5905-12. doi: 10.1021/ac300254d. Epub 2012 Jun 27.
Precise profiling of polar lipids including gangliosides and sulfatides is a necessary step in understanding the diverse physiological role of these lipids. We have established an efficient method for the profiling of polar lipids using reversed-phase nano high-performance liquid chromatography microfluidic chip quadrupole time-of-flight mass spectrometry (nano-HPLC-chip Q-TOF/MS). A microfluidic chip design provides improved chromatographic performance, efficient separation, and stable nanospray while the advanced high-resolution mass spectrometer allowed for the identification of complex isobaric polar lipids such as NeuAc- and NeuGc-containing gangliosides. Lipid classes were identified based on the characteristic fragmentation product ions generated during data-dependent tandem mass spectrometry (MS/MS) experiments. Each class was monitored by a postprocessing precursor ion scan. Relatively simple quantitation and identification of intact ions was possible due to the reproducible retention times provided by the nano-HPLC chip. The method described in this paper was used to profile polar lipids from mouse brain, which was found to contain 17 gangliosides and 13 sulfatides. Types and linkages of the monosaccharides and their acetyl modifications were identified by low-energy collision-induced dissociation (CID) (40 V), and the type of sphingosine base was identified by higher energy CID (80 V). Accurate mass measurements and chromatography unveiled the degree of unsaturation and hydroxylation in the ceramide lipid tails.
精确分析包括神经节苷脂和硫脂在内的极性脂质是理解这些脂质多样化生理作用的必要步骤。我们已经建立了一种使用反相纳米高效液相色谱微流控芯片四极杆飞行时间质谱(nano-HPLC-chip Q-TOF/MS)分析极性脂质的有效方法。微流控芯片设计提供了改进的色谱性能、高效分离和稳定的纳喷雾,而先进的高分辨率质谱仪则允许鉴定复杂的等质异位极性脂质,如含有 NeuAc 和 NeuGc 的神经节苷脂。根据在数据依赖串联质谱(MS/MS)实验中产生的特征碎片产物离子,对脂质类别进行鉴定。通过后处理前体离子扫描监测每个类别。由于 nano-HPLC 芯片提供了可重复的保留时间,因此可以相对简单地进行定量和鉴定完整离子。本文中描述的方法用于分析来自小鼠大脑的极性脂质,发现其中含有 17 种神经节苷脂和 13 种硫脂。通过低能量碰撞诱导解离(CID)(40 V)鉴定单糖及其乙酰修饰的类型和键合方式,通过更高能量 CID(80 V)鉴定神经鞘氨醇碱基的类型。精确质量测量和色谱揭示了神经酰胺脂质尾部的不饱和和羟基化程度。