Leng Jiapeng, Guan Qing, Sun Tuanqi, Wang Haoyang, Cui Jianlan, Liu Qinghao, Zhang Zhixu, Zhang Manyu, Guo Yinlong
Department of Chemical Engineering, North University of China, Taiyuan 030051, China.
Department of Head and Neck Surgery, Fudan University Shanghai Cancer Center (FUSCC), Shanghai 200032, China; Department of Oncology, Shanghai Medical College, Fudan University, Shanghai 200032, China.
Anal Chim Acta. 2015 Aug 5;887:148-154. doi: 10.1016/j.aca.2015.06.029. Epub 2015 Aug 7.
A rapid method for fatty acids (FAs) comparative profiling based on carboxyl-specific stable isotope labeling (SIL) and direct infusion electrospray ionization-ion mobility-mass spectrometry (ESI-IM-MS) is established. The design of the method takes advantage of the three-dimensional characteristics of IM-MS including drift time, m/z and ion intensity, for comparison of d0-/d6-2,4-dimethoxy-6-piperazin-1-yl pyrimidine (DMPP)-labeled FAs. In particular, without chromatographic separation, the method allowed direct FAs profiling in complex samples due to the advantageous priority of DMPP in signal enhancement as well as the extra resolution that IM-MS offered. Additionally, the d0-/d6-DMPP-labeled FAs showed expected features, including very similar drift times, 6 Da mass deviations, specific reporter ions, similar MS responses, and adherence to the drift time rule regarding the influence of carbon chain length and unsaturation on relative drift times. Therefore, the introduction of isotope analogs minimized the matrix effect and variations in quantification and ensured accurate identification of non-targeted FAs by those typical features. Peak intensity ratios between d0-/d6-DMPP-labeled ions were subsequently used in relative quantification for the detected FAs. The established strategy has been applied successfully in the rapid profiling of trace free FAs between normal and cancerous human thyroid tissues. Sixteen free FAs were found with the increased level with a statistically significant difference (p < 0.05) compared to the normal tissue samples. The integrated SIL technique and ESI-IM-MS are expected to serve as an alternative tool for high-throughput analysis of FAs in complex samples.
建立了一种基于羧基特异性稳定同位素标记(SIL)和直接进样电喷雾电离-离子淌度-质谱(ESI-IM-MS)的脂肪酸(FAs)比较分析快速方法。该方法的设计利用了IM-MS的三维特性,包括漂移时间、质荷比和离子强度,用于比较d0-/d6-2,4-二甲氧基-6-哌嗪-1-基嘧啶(DMPP)标记的脂肪酸。特别是,由于DMPP在信号增强方面的优势以及IM-MS提供的额外分辨率,该方法无需色谱分离即可直接对复杂样品中的脂肪酸进行分析。此外,d0-/d6-DMPP标记的脂肪酸显示出预期的特征,包括非常相似的漂移时间、6 Da的质量偏差、特定的报告离子、相似的质谱响应,以及符合碳链长度和不饱和度对相对漂移时间影响的漂移时间规则。因此,同位素类似物的引入最大限度地减少了基质效应和定量变化,并通过这些典型特征确保了对非靶向脂肪酸的准确鉴定。随后,d0-/d6-DMPP标记离子之间的峰强度比用于检测到的脂肪酸的相对定量。所建立的策略已成功应用于正常人甲状腺组织和癌组织中痕量游离脂肪酸的快速分析。与正常组织样品相比,发现16种游离脂肪酸水平升高,差异具有统计学意义(p < 0.05)。预计集成的SIL技术和ESI-IM-MS将成为复杂样品中脂肪酸高通量分析的替代工具。