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DRILL: An Electrospray Ionization-Mass Spectrometry Interface for Improved Sensitivity via Inertial Droplet Sorting and Electrohydrodynamic Focusing in a Swirling Flow

机译:DRILL:电喷雾电离质谱接口用于通过旋流中的惯性液滴分选和电流体动力学聚焦来提高灵敏度

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摘要

We describe the DRILL (dry ion localization and locomotion) device, which is an interface for electrospray ionization (ESI)-mass spectrometry (MS) that exploits a swirling flow to enable the use of inertial separation to prescribe different fates for electrosprayed droplets based on their size. This source adds a new approach to charged droplet trajectory manipulation which, when combined with hydrodynamic drag forces and electric field forces, provides a rich range of possible DRILL operational modes. Here, we experimentally demonstrate sensitivity improvement obtained via vortex-induced inertial sorting of electrosprayed droplets/ions: one possible mode of DRILL operation. In this mode, DRILL removes larger droplets while accelerating the remainder of the ESI plume, producing a high velocity stream of gas-enriched spray with small, highly charged droplets and ions and directing it toward the MS inlet. The improved signal-to-noise ratio (10-fold enhancement) in the detection of angiotensin I is demonstrated using the DRILL interface coupled to ESI-MS along with an improved limit of detection (10-fold enhancement, 100 picomole) in the detection of angiotensin II. The utility of DRILL has also been demonstrated by liquid chromatography (LC)–MS: a stable isotope labeled peptide cocktail was spiked into a complex native tissue extract and quantified by unscheduled multiple reaction monitoring on a TSQ Vantage. DRILL demonstrated improved signal strength (up to a 700-fold) for 8 out of 9 peptides and had no effects on the peak shape of the transitions.
机译:我们描述了DRILL(干离子定位和运动)设备,这是电喷雾电离(ESI)质谱(MS)的接口,该接口利用旋流来实现惯性分离,从而根据他们的大小。该来源为带电液滴的轨迹操纵增加了一种新方法,当与流体动力阻力和电场力结合使用时,可提供多种可能的DRILL操作模式。在这里,我们实验证明了通过电喷雾液滴/离子的涡流诱导惯性分选获得的灵敏度提高:DRILL操作的一种可能模式。在这种模式下,DRILL去除了较大的液滴,同时加速了ESI羽流的其余部分,产生了高速的富含气体的喷雾流,其中包含小的,高度带电的液滴和离子,并将其引向MS入口。使用结合ESI-MS的DRILL接口,在血管紧张素I的检测中提高了信噪比(增强了10倍),并在检测中提高了检测限(增强了10倍,100皮摩尔)血管紧张素II。 DRILL的效用也已通过液相色谱(LC)-MS进行了证明:将稳定的同位素标记的肽混合物掺入复杂的天然组织提取物中,并通过TSQ Vantage上的非计划多反应监测进行定量。 DRILL对9个肽中的8个显示出改善的信号强度(高达700倍),并且对过渡峰形没有影响。

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