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Microsphere entrapped emitters for sample preconcentration and electrospray ionization mass spectrometry

机译:捕获微球的发射器,用于样品预浓缩和电喷雾电离质谱

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In this study a nano-electrospray emitter is constructed by precisely positioning entrapped octadecylsilane (ODS) particles within a photoinitiated polymer at the exit aperture of a capillary. Following poly-merization, the microsphere/polymer hybrid material is able to withstand pressures greater than 4000 psi for 1 cm length of material. Smaller microspheres (3 mu m) patterned at the exit aperture of a capillary generated the most sensitive/stable electrospray from 100 to 1000 nL/min and moderately stable signal under 100 nL/min. Constant infusion of a standard PPG solution from a batch of eleven emitters resulted in a relatively small variance in total ion current (TIC) counts (8%). The entrapped microsphere emitter design yields an emitter that minimizes clogging and eliminates dead volume between the chromatographic bed and the electrospray emitter. The entrapped ODS microspheres can also be used for sample preparation prior to mass spectrometry (MS) analysis. We show the solid-phase extraction and preconcentration of 20-700 fmol of a peptide (leucine enkephalin) prior to MS analysis on an emitter with 1 cm of entrapped microspheres.
机译:在这项研究中,纳米电喷雾发射器是通过将捕获的十八烷基硅烷(ODS)颗粒精确定位在毛细管出口处的光引发聚合物中而构造的。聚合后,微球/聚合物杂化材料能够承受1厘米长的材料大于4000 psi的压力。在毛细管出口孔处形成图案的较小微球(3微米)可产生100至1000 nL / min的最灵敏/稳定的电喷雾,并在100 nL / min下产生适度稳定的信号。从一批11个发射器中不断注入标准PPG溶液会导致总离子电流(TIC)计数相对较小的变化(8%)。捕获的微球发射器设计可产生一种发射器,该发射器可最大程度地减少堵塞并消除色谱床和电喷雾发射器之间的死体积。捕获的ODS微球也可以用于质谱(MS)分析之前的样品制备。我们显示了固相萃取和20-700 fmol的肽(亮氨酸脑啡肽)的预浓缩,然后在带有1 cm捕获微球的发射体上进行MS分析。

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