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Reduction of signal suppression effects in ESI-MS using a nanosplitting device

机译:使用纳米分离装置降低ESI-MS中的信号抑制效果

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Electrospray ionization mass spectrometry is a valuable tool in the identification and quantification of drug metabolites in biological fluids. However, there are many instances where matrix components present in these fluids interfere with analyte detection and prevent the acquisition of accurate or complete results. In some instances, the matrix can suppress ionization to such an extent that analytes are completely undetectable by MS. In this work, we investigate how ionization and ion-transfer efficiencies are affected by drastically reducing the flow into the MS. A postcolumn concentric flow-splitting device was constructed to allow the measurement of analyte signal and ionization suppression across a range of flow rates (0.1-200 muL/min). Using this device, the effects of flow rate on signal intensity and ionization suppression were measured in analytical experiments that included flow injection analysis MS, postcolumn addition LC-MS, and on-line LC-MS analysis of metabolites generated from rat liver microsomes. The device used to deliver 0.1 muL/min flows is referred to as a nanosplitter because it achieved high split ratios (2000: 1), producing flow rates comparable to those observed in nanoelectrospray. The nanosplitter maintained chromatographic integrity with high fidelity and allowed the direct comparison of analyte signal across a range of flow rates (0.1-200 muL/min). A significant improvement in concentration and mass sensitivity as well as a reduction in signal suppression is observed when the performance at 200 versus 0.1 muL/min flow rate is compared. Using this specially designed concentric splitting device, the advantages of ultralow flow ESI were easily exploited for applications employing large bore chromatography.
机译:电喷雾电离质谱法是鉴定和定量生物流体中药物代谢物的重要工具。但是,在许多情况下,这些流体中存在的基质成分会干扰分析物的检测并妨碍获得准确或完整的结果。在某些情况下,基质可将电离抑制到一定程度,以致MS完全无法检测到分析物。在这项工作中,我们研究了通过大大减少流入MS的流量对电离和离子转移效率的影响。构造了柱后同心分流装置,以允许在整个流速范围内(0.1-200μL/ min)测量分析物信号并抑制电离。使用该设备,在分析实验中测量了流速对信号强度和电离抑制的影响,这些分析实验包括流动注射分析MS,柱后添加LC-MS和对大鼠肝微粒体产生的代谢物进行在线LC-MS分析。用于输送0.1μL/ min流量的设备被称为纳米分离器,因为它实现了高分流比(2000:1),产生的流量与纳米电喷雾中观察到的相当。纳米分离器以高保真度保持色谱完整性,并允许在各种流速(0.1-200μL/ min)范围内直接比较分析物信号。当将200和0.1μL/ min流速下的性能进行比较时,观察到浓度和质量灵敏度的显着提高以及信号抑制的降低。使用这种特殊设计的同心分离装置,超低流量ESI的优势很容易在采用大口径色谱的应用中得到利用。

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