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首页> 外文期刊>Journal of separation science. >Integrated microfluidic devices with enhanced separation performance: Application to phosphoproteome analyses of differentiated cell model systems
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Integrated microfluidic devices with enhanced separation performance: Application to phosphoproteome analyses of differentiated cell model systems

机译:具有增强的分离性能的集成微流控设备:应用于分化细胞模型系统的磷酸化蛋白质组分析

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This work reports on the application of a microfluidic device integrating nanoscale LC to nanoelectrospray MS (nano-LC-chip-MS) for the analysis of complex protein digests. Peak profile analyses of more than 700 peptide ions, reproducibly detected across replicate nano-LC-chip-MS runs (n = 5), indicated that the system provided RSD values of 0.24% on retention time, +/- 30 ppm on m/z measurement and +/- 30% variation on intensity over three orders of magnitude. RP adsorbant media with different alkyl chains and particle size packed in both trapping and separation channels were investigated to improve the chromatographic performance of this system. A two-fold improvement in chromatographic peak capacity was achieved using microfluidic devices comprising a 5 mu M C-3 trap with 2.5 mu m C-18 trap separation channel compared to the traditional 5 mu m C-18 stationary phase. Enhanced sample selectivity for the identification of phosphopeptides was obtained by combining immobilized metal affinity media prior to peptide separation on the RP microfluidic device. This system was evaluated in the context of differential phosphoproteome analyses to identify changes in signaling events and protein expression of human monocytes following the administration of phorbol ester.
机译:这项工作报告了将纳米级LC集成到纳米电喷雾质谱仪(nano-LC-chip-MS)上用于分析复杂蛋白质消化物的微流控设备的应用。在重复的纳米LC-chip-MS运行(n = 5)中可重复检测到700多种肽离子的峰分布分析,表明该系统的保留时间RSD值为0.24%,m / +/- 30 ppm z测量,强度在三个数量级上变化+/- 30%。研究了在捕集和分离通道中填充有不同烷基链和粒径的RP吸附剂介质,以提高该系统的色谱性能。与传统的5μmC-18固定相相比,使用包含5μMC-3阱和2.5μmC-18阱分离通道的微流控装置,色谱峰容量提高了两倍。通过将固定的金属亲和介质在RP微流控设备上进行肽分离之前进行组合,可以提高鉴定磷酸肽的样品选择性。在差异磷酸化蛋白质组分析的背景下对该系统进行了评估,以鉴定佛波醇酯给药后人单核细胞信号传递事件和蛋白质表达的变化。

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