Li Yen-Hsien, Chen Chung-Yu, Kuo Cheng-Hsiung, Lee Maw-Rong
Department of Chemistry, National Chung Hsing University, Taichung 40227, Taiwan, ROC.
Department of Mechanical Engineering, National Chung Hsing University, 40227, Taiwan, ROC.
Anal Chim Acta. 2016 Sep 28;938:98-105. doi: 10.1016/j.aca.2016.07.025. Epub 2016 Jul 25.
During the electrospray ionization (ESI) process, ions move through a heated capillary aperture to be detected on arrival at a mass analyzer. However, the ESI process creates an ion plume, which expands into an ion cloud with an area larger than that of the heated capillary aperture, significantly contributing to an ion loss of 50% due to coulombic repulsion. The use of DC and RF fields to focus ions from the ion source into the vacuum chamber has been proposed in the literature, but the improvement of ion transmission efficiency is limited. To improve ion transmission, in this study we propose a novel method using a home-made golf ball positioned between the ion source and the inlet of the mass analyzer to hydrodynamically focus the ions passing through the golf ball. The ion plume produced by the ESI process passes through the golf ball will reduce the size of the ion cloud then be focused and most of them flowed into the mass analyzer. Therefore, the sensitivity will be improved, the aim of this investigation is to study the enhancing of the signal using golf ball-assisted electrospray ionization liquid chromatography tandem mass spectrometry (LC-MS/MS) to determine 20 trace amino acids in complex samples, including tea, urine and serum. The results showed that the analytical performance of the determination of the 20 amino acids in tea, urine and serum samples using the home-made golf ball-assisted ESI source is better than that of a commercial ESI source. The signal intensities of the 20 amino acids were enhanced by factors of 2-2700, 11-2525, and 31-342680 in oolong tea, urine and serum analyses, respectively. The precision of the proposed method ranged from 1-9%, 0.4-9% and 0.4-8% at low, medium and high concentration levels of amino acids, respectively. The home-made golf ball-assisted ESI source effectively increased the signal intensity and enhanced the ion transmission efficiency and is also an easy, convenient and economical device. This technique can be applied to the analysis of trace compounds in complex matrices.
在电喷雾电离(ESI)过程中,离子通过加热的毛细管孔径移动,到达质量分析仪时被检测到。然而,ESI过程会产生离子羽流,该羽流会扩展成面积大于加热毛细管孔径的离子云,由于库仑排斥作用,这会导致50%的离子损失。文献中已提出使用直流和射频场将离子从离子源聚焦到真空室中,但离子传输效率的提高有限。为了提高离子传输效率,在本研究中,我们提出了一种新颖的方法,即在离子源和质量分析仪入口之间放置一个自制的高尔夫球,以流体动力学方式聚焦穿过高尔夫球的离子。ESI过程产生的离子羽流穿过高尔夫球后,离子云的尺寸会减小,然后被聚焦,并且大多数离子会流入质量分析仪。因此,灵敏度将得到提高,本研究的目的是研究使用高尔夫球辅助电喷雾电离液相色谱串联质谱(LC-MS/MS)来测定复杂样品(包括茶叶、尿液和血清)中的20种痕量氨基酸时信号的增强情况。结果表明,使用自制的高尔夫球辅助ESI源测定茶叶、尿液和血清样品中20种氨基酸的分析性能优于商业ESI源。在乌龙茶、尿液和血清分析中,20种氨基酸的信号强度分别提高了2至2700倍、11至2525倍和31至342680倍。所提出方法的精密度在低、中、高氨基酸浓度水平下分别为1%至9%、0.4%至9%和0.4%至8%。自制的高尔夫球辅助ESI源有效地提高了信号强度,增强了离子传输效率,并且是一种简单、方便且经济的装置。该技术可应用于复杂基质中痕量化合物的分析。