School of Life Science, Beijing Institute of Technology, Beijing, 100081, China.
National Institute of Metrology, Beijing, 100013, China.
J Am Soc Mass Spectrom. 2017 Jul;28(7):1262-1270. doi: 10.1007/s13361-016-1504-z. Epub 2017 May 25.
A dual-polarity linear ion trap (LIT) mass spectrometer was developed in this study, and the method for simultaneously controlling and detecting cations and anions was proposed and realized in the LIT. With the application of an additional dipolar DC field on the ejection electrodes of an LIT, dual-polarity mass spectra could be obtained, which include both the mass-to-charge (m/z) ratio and charge polarity information of an ion. Compared with conventional method, the ion ejection and detection efficiency could also be improved by about one-fold. Furthermore, ion-ion reactions within the LIT could be dynamically controlled and monitored by manipulating the distributions of ions with opposite charge polarities. This method was then used to control and study the reaction kinetics of ion-ion reactions, including electron transfer dissociation (ETD) and charge inversion reactions. A dual-polarity collision-induced dissociation (CID) experiment was proposed and performed to enhance the sequence coverage of a peptide ion. Ion trajectory simulations were also carried out for concept validation and system optimization. Graphical Abstract ᅟ.
本研究中开发了一种双极性线性离子阱(LIT)质谱仪,并提出并实现了在 LIT 中同时控制和检测阳离子和阴离子的方法。通过在 LIT 的引出电极上施加附加的双极直流场,可以获得双极性质谱,其中包括离子的质荷比(m/z)比和电荷极性信息。与传统方法相比,离子引出和检测效率也可以提高约一倍。此外,通过操纵具有相反电荷极性的离子分布,可以动态控制和监测 LIT 内的离子-离子反应。该方法随后用于控制和研究离子-离子反应的反应动力学,包括电子转移解离(ETD)和电荷反转反应。提出并进行了双极性碰撞诱导解离(CID)实验,以提高肽离子的序列覆盖率。还进行了离子轨迹模拟,以验证概念和优化系统。