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Automation of nanoscale microcapillary liquid chromatography-tandem mass spectromentry with a vented column

机译:带排气柱的纳米级微毛细管液相色谱-串联质谱仪的自动化

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To fully automate the sample introduction step for nano-scale microcapillary liquid chromatography-tandem mass spectrometry (LC-MS/MS) analyses, 75 mum W. x 14 cm capillary columns were interfaced with a commercial autosampler instrument using a novel procedure which allowed dilute peptide samples to be transferred from the AS loop injector to the nanoscale column at flow rates up to 5 muL min(-1). On-column enrichment and desalting was demonstrated for large sample volumes (>40 muL) by constructing a vent 2 cm after the entrance to the packed bed of 5-mum ODS-AQ modified silica. Salts and nonretained solutes were removed via the vent, which allowed for column washing independent of the continuation of the bed into the electrospray source. Separations of test peptide mixtures demonstrated 50-nL elution peak volumes with low- to subfemtomole detection levels. In addition, a highly complex peptide mixture (outer membrane preparation from Psuedemonas aeruginosa) was efficiently separated with more than 100 proteins identified from a single reversed-phase LC-MS/MS analysis. Finally, the vented column (V-column) was utilized for online separations in a multidimensional chromatography/tandem MS experiment where large numbers of strong cation exchange chromatography fractions from a trypsinized yeast lysate were desalted, concentrated, and analyzed in a completely automated fashion. The procedures for constructing and using a V-column require minimal changes in current methods and equipment for nano-LC-MS analyses using columns of 100-mum diameter and smaller. [References: 23]
机译:为了使纳米级微毛细管液相色谱-串联质谱分析(LC-MS / MS)的样品引入步骤完全自动化,将75 m W. x 14 cm的毛细管色谱柱与商业自动进样器仪器连接,并使用了可以稀释的新颖方法肽样品以高达5μLmin(-1)的流速从AS定量环进样器转移至纳米级色谱柱。通过在5微米ODS-AQ改性硅胶填充床的入口后2厘米处构建通风孔,证明了大体积样品(> 40μL)的柱上富集和脱盐效果。盐和未保留的溶质通过排气孔除去,从而可以进行柱清洗,而与床是否继续进入电喷雾源无关。测试肽混合物的分离表明洗脱峰体积为50-nL,检测水平为低至亚微摩尔。此外,通过一次反相LC-MS / MS分析鉴定出的100多种蛋白质可有效分离出高度复杂的肽混合物(铜绿假单胞菌的外膜制剂)。最后,在多维色谱/串联MS实验中,使用排气柱(V柱)在线分离,其中胰蛋白酶消化的酵母裂解液中的大量强阳离子交换色谱馏分被脱盐,浓缩并以全自动方式进行分析。构造和使用V柱的程序需要使用直径为100毫米或更小的色谱柱的纳米LC-MS分析的当前方法和设备进行最少的改动。 [参考:23]

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