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Pulsed Multiple Reaction Monitoring Approach to Enhancing Sensitivity of a Tandem Quadrupole Mass Spectrometer

机译:脉冲多反应监测方法提高串联四极杆质谱仪的灵敏度

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Liquid chromatography (LC)-triple quadrupole mass spectrometers operating in a multiple reaction monitoring (MRM) mode are increasingly used for quantitative analysis of low-abundance analytes in highly complex biochemical matrixes. After development and selection of optimum MRM transitions, sensitivity and data quality limitations are largely related to mass spectral peak interferences from sample or matrix constituents and statistical limitations at low number of ions reaching the detector. Herein, we report on a new approach to enhancing MRM sensitivity by converting the continuous stream of ions from the ion source into a pulsed ion beam through the use of an ion funnel trap (IFT). Evaluation of the pulsed MRM approach was performed with a tryptic digest of Shewanella oneidensis strain MR-1 spiked with several model peptides. The sensitivity improvement observed with the IFT coupled in to the triple quadrupole instrument is based on several unique features. First, ion accumulation radio frequency (rf) ion trap facilitates improved droplet desolvation, which is manifested in the reduced background ion noise at the detector. Second, signal amplitude for a given transition is enhanced because of an order-of-magnitude increase in the ion charge density compared to a continuous mode of operation. Third, signal detection at the full duty cycle is obtained, as the trap use eliminates dead times between transitions, which are inevitable with continuous ion streams. In comparison with the conventional approach, the pulsed MRM signals showed 5-fold enhanced peak amplitude and 2-3-fold reduced chemical background, resulting in an improvement in the limit of detection (LOD) by a factor of approx4-8.
机译:在多反应监测(MRM)模式下运行的液相色谱(LC)三重四极杆质谱仪越来越多地用于高度复杂的生化基质中低丰度分析物的定量分析。在开发和选择最佳MRM离子对之后,灵敏度和数据质量的局限性与样品或基质成分的质谱峰干扰以及到达检测器的离子数量较少时的统计局限性密切相关。本文中,我们报告了一种通过使用离子漏斗(IFT)将来自离子源的连续离子流转换成脉冲离子束来增强MRM灵敏度的新方法。脉冲MRM方法的评估是用加有几种模型肽的Shewanella oneidensis菌株MR-1的胰蛋白酶消化物进行的。将IFT耦合到三重四极杆仪器中观察到的灵敏度提高是基于几个独特的功能。首先,离子积累射频(rf)离子阱有助于改善液滴的去溶剂化能力,这在检测器上降低了背景离子噪声中得到了体现。第二,给定跃迁的信号幅度得到了增强,因为与连续操作模式相比,离子电荷密度的数量级增加。第三,由于陷阱的使用消除了跃迁之间的死区时间(连续的离子流不可避免),因此可以在整个占空比下进行信号检测。与传统方法相比,脉冲MRM信号显示出5倍的峰值振幅增强和2-3倍的化学背景降低,从而将检测限(LOD)提高了大约4-8倍。

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