Yang Tingxiang, Qi Lerong, Yang Hao, Xia Yihan, Wang Zhen, Wang Dong Hao
School of Agriculture and Biotechnology, Shenzhen Campus of Sun Yat-sen University, Shenzhen 518107, China.
School of Public Health (Shenzhen), Shenzhen Campus of Sun Yat-sen University, Shenzhen 518107, China.
J Am Soc Mass Spectrom. 2025 May 7;36(5):1158-1166. doi: 10.1021/jasms.5c00033. Epub 2025 Apr 21.
Derivatization of unsaturated fatty acids with dimethyl disulfide (DMDS) and analysis by electron ionization mass spectrometry (EIMS) represent a convenient offline method for the identification of double bond positions. However, the presence of overlapping mass spectra from multiple compounds poses significant challenges for spectral interpretation and library matching, leading to ambiguous molecular information and low sensitivity. To overcome the issue, we developed a novel chemical ionization (CI) tandem mass spectrometry method involving the pre-derivatization with DMDS and collisional activation of [M+47] ions generated in the chemical ion source. The method provides better specificity to the analysis of targeted fatty acids and does not require any customized devices. Further, a multiple reaction monitoring (MRM) version of the method was designed by screening all the diagnostic ions of possible double bond positional isomers, which significantly boosts the sensitivity. Compared to the traditional EIMS method, the new method exhibits a lower limit of detection (LLOD) that is one-tenth or lower. Employing the new method, unusual isomer 18:2(5,8) was co-analyzed with 18:2(9,12), and a novel 20:2(7,10) was characterized in human sebum. Additionally, 16:2(9,12), an odd-chain omega-3 polyunsaturated fatty acid (21:5n-3) and polymethylene-interrupted isomers, i.e. 22:2(7,13) and 22:2(7,15) were identified in seafood and related products. Our method can be readily applied to any GC instrument equipped with tandem MS and is expected to facilitate the discovery and identification of unknown fatty acids from food, clinical, and environmental sources.
用二甲基二硫化物(DMDS)对不饱和脂肪酸进行衍生化,并通过电子电离质谱(EIMS)分析,是一种用于确定双键位置的便捷离线方法。然而,多种化合物的质谱图重叠给光谱解释和谱库匹配带来了重大挑战,导致分子信息模糊且灵敏度较低。为克服这一问题,我们开发了一种新型化学电离(CI)串联质谱方法,该方法包括用DMDS进行预衍生化以及对化学离子源中产生的[M + 47]离子进行碰撞活化。该方法对目标脂肪酸的分析具有更好的特异性,并且不需要任何定制设备。此外,通过筛选可能的双键位置异构体的所有诊断离子,设计了该方法的多反应监测(MRM)版本,这显著提高了灵敏度。与传统的EIMS方法相比,新方法的检测下限(LLOD)降低到十分之一或更低。采用新方法,将不寻常的异构体18:2(5,8)与18:2(9,12)共同分析,并在人皮脂中鉴定出一种新型的20:2(7,10)。此外,在海鲜及相关产品中鉴定出了16:2(9,12)、一种奇数链ω-3多不饱和脂肪酸(21:5n-3)以及多亚甲基间断异构体,即22:2(7,13)和22:2(7,15)。我们的方法可轻松应用于任何配备串联质谱的气相色谱仪,有望促进从食品、临床和环境来源中发现和鉴定未知脂肪酸。