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Microfluidic chip for peptide analysis with an integrated HPLC column, sample enrichment column, and nanoelectrospray tip

机译:具有集成HPLC柱,样品富集柱和纳米电喷雾头的多肽分析微流控芯片

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Current nano-LC/MS systems require the use of an enrichment column, a separation column, a nanospray tip, and the fittings needed to connect these parts together. In this paper, we present a microfabricated approach to nano-LC, which integrates these components on a single LC chip, eliminating the need for conventional LC connections. The chip was fabricated by laminating polyimide films with laser-ablated channels, ports, and hit structures. The enrichment and separation columns were packed using conventional reversed-phase chromatography particles. A face-seal rotary valve provided a means for switching between sample loading and separation configurations with minimum dead and delay volumes while allowing high-pressure operation. The LC chip and valve assembly were mounted within a custom electrospray source on an ion-trap mass spectrometer. The overall system performance was demonstrated through reversed-phase gradient separations of tryptic protein digests at flow rates between 100 and 400 nL/min. Microfluidic integration of the nano-LC components enabled separations with subfemtomole detection sensitivity, minimal carryover, and robust and stable electrospray throughout the LC solvent gradient.
机译:当前的nano-LC / MS系统需要使用浓缩柱,分离柱,纳米喷雾头以及将这些部件连接在一起所需的配件。在本文中,我们提出了一种微制造纳米LC的方法,该方法将这些组件集成在单个LC芯片上,从而无需传统的LC连接。该芯片是通过将聚酰亚胺薄膜与激光烧蚀的通道,端口和击打结构层压在一起而制成的。浓缩和分离柱使用常规的反相色谱填料进行填充。面密封旋转阀提供了一种在死体积和延迟体积最小的情况下在允许高压操作的同时在样品加载和分离配置之间切换的装置。 LC芯片和阀组件安装在离子阱质谱仪上的定制电喷雾源内。通过以100和400 nL / min之间的流速进行胰蛋白酶消化物的反相梯度分离,证明了整个系统的性能。纳米LC组分的微流控集成实现了分离,具有亚甲酚检测灵敏度,最小的残留量以及在整个LC溶剂梯度中均具有强大而稳定的电喷雾。

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