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Development of Ultra-High Pressure Capillary Reverse-Phase Liquid Chromatography/Tandem Mass Spectrometry for High-Sensitive and High-Throughput Proteomics

机译:用于高灵敏度和高通量蛋白质组学的超高压毛细管反相液相色谱/串联质谱的开发

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Recently mass spectrometry and separation methods such as liquid chromatography have become major tools in the field of proteomics. In this report, we describe in detail our efforts to develop ultra-high pressure capillary reverse-phase liquid chromatography (cRPLC) and its online coupling to a mass spectrometer by a nanoelectrospray (nanoESI) interface. The RPLC system is constructed in house to deliver LC solvents at the pressure up to 20,000 psig, which is four times higher than conventional RPLC systems. The high operation pressure allows the efficient use of packed micro-capillary columns (50, 75 and 150 レm i.d., up to 1.5 m long). We will discuss the effect of column diameter on the sensitivity of cRPLC/MS/MS experiments and the utility of the developed technique for proteome analysis by its application in the analysis of proteome samples having different levels of complexity.
机译:最近,质谱和分离方法(例如液相色谱法)已成为蛋白质组学领域的主要工具。在本报告中,我们详细描述了我们开发超高压毛细管反相液相色谱(cRPLC)以及通过纳米电喷雾(nanoESI)接口将其在线耦合到质谱仪的努力。 RPLC系统是在内部构造的,可以在高达20,000 psig的压力下输送LC溶剂,这是传统RPLC系统的四倍。高操作压力允许高效使用填充的微毛细管色谱柱(内径50、75和150 µm,最长1.5 m)。我们将讨论柱直径对cRPLC / MS / MS实验灵敏度的影响,以及通过将其应用于具有不同复杂程度的蛋白质组样品分析中而开发的蛋白质组分析技术的实用性。

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