Page Jason S, Bogdanov Bogdan, Vilkov Andrey N, Prior David C, Buschbach Michael A, Tang Keqi, Smith Richard D
Biological Sciences Division, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.
J Am Soc Mass Spectrom. 2005 Feb;16(2):244-53. doi: 10.1016/j.jasms.2004.11.003.
We report on the use of a jet disrupter electrode in an electrodynamic ion funnel as an electronic valve to regulate the intensity of the ion beam transmitted through the interface of a mass spectrometer in order to perform automatic gain control (AGC). The ion flux is determined by either directly detecting the ion current on the conductance limiting orifice of the ion funnel or using a short mass spectrometry acquisition. Based upon the ion flux intensity, the voltage of the jet disrupter is adjusted to alter the transmission efficiency of the ion funnel to provide a desired ion population to the mass analyzer. Ion beam regulation by an ion funnel is shown to provide control to within a few percent of a targeted ion intensity or abundance. The utility of ion funnel AGC was evaluated using a protein tryptic digest analyzed with liquid chromatography Fourier transform ion cyclotron resonance (LC-FTICR) mass spectrometry. The ion population in the ICR cell was accurately controlled to selected levels, which improved data quality and provided better mass measurement accuracy.
我们报告了在电动离子漏斗中使用喷射破坏电极作为电子阀,以调节通过质谱仪接口传输的离子束强度,从而实现自动增益控制(AGC)。离子通量可通过直接检测离子漏斗的电导限制孔上的离子电流或使用短时间的质谱采集来确定。基于离子通量强度,调整喷射破坏电极的电压,以改变离子漏斗的传输效率,从而为质量分析器提供所需的离子数量。结果表明,通过离子漏斗进行离子束调节可将控制精度提高到目标离子强度或丰度的百分之几以内。使用液相色谱傅里叶变换离子回旋共振(LC-FTICR)质谱分析蛋白质胰蛋白酶消化产物,评估了离子漏斗AGC的实用性。ICR池中离子数量被精确控制到选定水平,这提高了数据质量并提供了更好的质量测量精度。