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CE 与 MALDI 耦合,采用新型共价涂层毛细管。

CE coupled to MALDI with novel covalently coated capillaries.

机构信息

Institute of Analytical Chemistry and Radiochemistry, Leopold-Franzens, University Innsbruck, Austria.

出版信息

Electrophoresis. 2010 Jan;31(4):618-29. doi: 10.1002/elps.200900507.

Abstract

CE offers the advantage of flexibility and method development options. It excels in the area of separation of ions, chiral, polar and biological compounds (especially proteins and peptides). Masking the active sites on the inner surface of a bare fused silica capillary wall is often necessary for CE separations of basic compounds, proteins and peptides. The use of capillary surface coating is one of the approaches to prevent the adsorption phenomena and improve the repeatability of migration times and peak areas of these analytes. In this study, new capillary coatings consisting of (i) derivatized polystyrene nanoparticles and (ii) derivatized fullerenes were investigated for the analysis of peptides and protein digest by CE. The coated capillaries showed excellent run-to-run and batch-to-batch reproducibility (RSD of migration time < or = 0.5% for run-to-run and < or = 9.5% for batch-to-batch experiments). Furthermore, the capillaries offer high stability from pH 2.0 to 10.0. The actual potential of the coated capillaries was tested by combining CE with MALDI-MS for analysing complex samples, such as peptides, whereas the overall performance of the CE-MALDI-MS system was investigated by analysing a five-protein digest mixture. Subsequently, the peak list (peptide mass fingerprint) generated from the mass spectra of each fraction was entered into the Swiss-Prot database in order to search for matching tryptic fragments using the MASCOT software. The sequence coverage of analysed proteins was between 36 and 68%. The established technology benefits from the synergism of high separation efficiency and the structure selective identification via MS.

摘要

CE 具有灵活性和方法开发选项的优势。它在分离离子、手性、极性和生物化合物(尤其是蛋白质和肽)方面表现出色。为了对碱性化合物、蛋白质和肽进行 CE 分离,通常需要对裸熔融石英毛细管内壁的活性位点进行掩蔽。使用毛细管表面涂层是防止吸附现象并提高这些分析物的迁移时间和峰面积重复性的方法之一。在这项研究中,研究了由(i)衍生聚苯乙烯纳米粒子和(ii)衍生富勒烯组成的新型毛细管涂层,用于通过 CE 分析肽和蛋白质消化物。涂覆的毛细管显示出出色的运行到运行和批到批重现性(运行到运行的迁移时间 RSD<或=0.5%,批到批实验的 RSD<或=9.5%)。此外,该毛细管在 pH 2.0 至 10.0 之间具有高稳定性。通过将 CE 与 MALDI-MS 结合用于分析复杂样品(如肽)来测试涂覆毛细管的实际潜力,而通过分析五种蛋白质消化混合物来研究 CE-MALDI-MS 系统的整体性能。随后,将从每个馏分的质谱中生成的峰列表(肽质量指纹)输入到 Swiss-Prot 数据库中,以便使用 MASCOT 软件搜索匹配的胰蛋白酶片段。分析蛋白质的序列覆盖率在 36%至 68%之间。所建立的技术受益于高分离效率和通过 MS 进行结构选择性鉴定的协同作用。

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