MOE Key Laboratory of Bioorganic Phosphorus Chemistry & Chemical Biology, Department of Chemistry , Tsinghua University , Beijing 100084 , China.
Anal Chem. 2019 Jun 4;91(11):7173-7180. doi: 10.1021/acs.analchem.9b00374. Epub 2019 May 16.
Fatty acids containing conjugated carbon-carbon double bonds (C═Cs), such as conjugated linoleic acids (CLAs), attract growing research interest due to their bioactivities against diabetes, cancer, and atherosclerosis. Analysis of conjugated fatty acid (CFA) is challenging for existing analytical techniques because it requires determination of geometry (cis ( Z) vs trans ( E)) and location of individual C═C. In this study, we developed a method to achieve confident, fast, and quantitative analysis of CFA isomers from mixtures. This method combines the strength of trapped ion mobility spectrometry (TIMS) for fast isomer separation and the Paternò-Büchi (PB) reaction followed by tandem mass spectrometry (MS/MS) for C═C location determination. Notably, the PB reaction of CFA is regioselective to terminal C═Cs, thus forming diagnostic fragment ions unique to conjugated C═Cs from PB-MS/MS. These fragment ions facilitate identification and quantitation of individual CLA isomers differing in C═C locations, affording limit of identification of 1 nM. Given that PB-MS/MS alone cannot identify the geometry of C═C, TIMS has been employed for characterizing C═C geometry. TIMS is capable to separate various C═C geometric isomers of CLAs, allowing visualization of C═C isomerization during the PB reaction. By coupling the PB-MS/MS with TIMS, two CLA isomers, CLA 18:2(9 Z,11 E) (46.9 ± 1.1%) and CLA 18:2(10 E,12 Z) (53.1 ± 1.1%), are quantified in a commercial CLA supplement.
含有共轭碳-碳双键 (C═Cs) 的脂肪酸,如共轭亚油酸 (CLA),因其对糖尿病、癌症和动脉粥样硬化的生物活性而引起了越来越多的研究兴趣。由于需要确定单个 C═C 的几何形状(顺式 ( Z) 与反式 ( E))和位置,现有的分析技术对共轭脂肪酸 (CFA) 的分析具有挑战性。在这项研究中,我们开发了一种方法,能够对混合物中的 CFA 异构体进行可靠、快速和定量分析。该方法结合了被困离子淌度谱 (TIMS) 快速异构体分离的优势,以及随后的串联质谱 (MS/MS) 用于确定 C═C 位置的 Paternò-Büchi (PB) 反应。值得注意的是,CFA 的 PB 反应是针对末端 C═Cs 的区域选择性的,因此从 PB-MS/MS 中形成了独特的共轭 C═Cs 的诊断片段离子。这些片段离子有助于鉴定和定量具有不同 C═C 位置的个体 CLA 异构体,其鉴定限低至 1 nM。鉴于 PB-MS/MS 本身无法识别 C═C 的几何形状,因此采用 TIMS 来表征 C═C 几何形状。TIMS 能够分离 CLA 的各种 C═C 几何异构体,允许在 PB 反应过程中可视化 C═C 异构化。通过将 PB-MS/MS 与 TIMS 耦合,在商业 CLA 补充剂中定量了两种 CLA 异构体,CLA 18:2(9 Z,11 E)(46.9 ± 1.1%)和 CLA 18:2(10 E,12 Z)(53.1 ± 1.1%)。