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纳米级填充毛细管液相色谱与使用同轴连续流快原子轰击接口的质谱联用。

Nanoscale packed-capillary liquid chromatography coupled with mass spectrometry using a coaxial continuous-flow fast atom bombardment interface.

作者信息

Moseley M A, Deterding L J, Tomer K B, Jorgenson J W

机构信息

Laboratory of Molecular Biophysics, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina 27709.

出版信息

Anal Chem. 1991 Jul 15;63(14):1467-73. doi: 10.1021/ac00014a023.

Abstract

Nanoscale packed-capillary liquid chromatography (LC) columns have been coupled with mass spectrometry (MS) using a coaxial continuous-flow fast atom bombardment interface. The combined system has been applied to the analysis of mixtures of peptides, including synthetic mixtures of bioactive peptides and tryptic digests of proteins. Nanoscale packed-capillary columns offer two principal advantages for LC/MS analysis--high chromatographic separation efficiencies and low mobile-phase flow rates. The high separation efficiencies facilitate the separation of complex mixtures, and the low mobile-phase flow rates reduce problems with coupling the LC effluent with the high-vacuum, high-voltage environment of sector MS ion sources. The columns used in this work were 50- or 75-micron i.d., 1-2 m long, packed with 10-micron C18 particles, using mobile-phase flow rates of 50-350 nL/min.

摘要

纳米级填充毛细管液相色谱(LC)柱已通过同轴连续流快原子轰击接口与质谱(MS)联用。该组合系统已应用于肽混合物的分析,包括生物活性肽的合成混合物和蛋白质的胰蛋白酶消化产物。纳米级填充毛细管柱在LC/MS分析中具有两个主要优点——高色谱分离效率和低流动相流速。高分离效率有助于分离复杂混合物,而低流动相流速减少了将LC流出物与扇形MS离子源的高真空、高电压环境耦合时出现的问题。本工作中使用的柱子内径为50或75微米,长1 - 2米,填充10微米的C18颗粒,流动相流速为50 - 350纳升/分钟。

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