Chemistry Department, University of Massachusetts Boston, Boston, MA, USA.
Rapid Commun Mass Spectrom. 2022 Feb 28;36(4):e9226. doi: 10.1002/rcm.9226.
The development of an automated platform for the positional analysis of triglycerides (TAGs) based on electrospray ionization tandem mass spectrometry (ESI-MS/MS) continues to be pursued. This work evaluates the positional sensitivities of the collision-induced dissociation (CID) spectra of a representative set of XYZ triglycerides using sodium, lithium, and ammonium salts as complexing agents.
A set of triglycerides were synthesized and analyzed via ESI-MS/MS using an ion trap mass spectrometer. Using three different complexing agents, the product ion spectra of the corresponding precursor ions for twelve XYZ TAGs were collected, where X, Y, and Z represent C , C , C , and C fatty acid chains. These data were then used to prepare ternary plots for four positional isomer systems to evaluate the positional sensitivity differences among the three different complexing agents.
The positional sensitivities for each of the four positional isomer systems were robust for the sodium and lithium adducts. The CID data for the sodium and lithium TAGs demonstrated an unfavorable loss of the fatty acid in the center position and showed a higher sensitivity to fatty acid position, when compared with the CID data for ammonium adducts, especially for the arachidonic acid containing triglycerides.
The data shows that that the relative abundances of the DAG product ions for the XYZ-type TAGs when using sodium and lithium complexing agent adducts are sensitive to fatty acid position and are consistent for the diverse array of TAGs studied in this work. This suggests that using sodium or lithium as the complexing agent may be advantageous for the development of an automated platform for the positional analysis of complex TAG mixtures based on ESI-MS/MS.
继续开发基于电喷雾串联质谱(ESI-MS/MS)的自动化甘油三酯(TAG)定位分析平台。本工作使用钠离子、锂离子和铵盐作为络合剂,评估了一组代表性的 XYZ 三酰基甘油的碰撞诱导解离(CID)谱的位置灵敏度。
使用离子阱质谱仪,通过 ESI-MS/MS 合成并分析了一组三酰基甘油。使用三种不同的络合剂,收集了十二种 XYZ TAG 相应前体离子的产物离子谱,其中 X、Y 和 Z 代表 C 、 C 、 C 和 C 脂肪酸链。然后,使用这些数据为四个位置异构体系统制备三元图,以评估三种不同络合剂之间的位置灵敏度差异。
对于四个位置异构体系统中的每一个,钠离子和锂离子加合物的位置灵敏度都很稳定。与铵加合物的 CID 数据相比,钠离子和锂离子 TAG 的 CID 数据表明中心位置的脂肪酸不利损失,并且对脂肪酸位置更敏感,特别是对于含有花生四烯酸的三酰基甘油。
数据表明,使用钠离子和锂离子络合剂加合物时,XYZ 型三酰基甘油的 DAG 产物离子的相对丰度对脂肪酸位置敏感,并且与本工作中研究的各种三酰基甘油一致。这表明使用钠离子或锂离子作为络合剂可能有利于开发基于 ESI-MS/MS 的复杂三酰基甘油混合物的位置分析自动化平台。