Institute for Chemical and Bioengineering, Department of Chemistry and Applied Biosciences, ETH Zürich, Zurich, Switzerland.
PLoS One. 2013 May 9;8(5):e63087. doi: 10.1371/journal.pone.0063087. Print 2013.
The integration of matrix-assisted laser desorption ionization (MALDI) mass spectrometry with an upstream analytical separations (such as liquid chromatography and electrophoresis) has opened up new opportunities for the automated investigation of complex protein and peptide mixtures. The ability to efficiently analyze complex proteomic mixtures in this manner is primarily determined by the ability to preserve spatial discrimination of sample components as they leave the separation column. Current interfacing methods are problematic in this respect since minimum fraction volumes are limited to several microliters. Herein we show for the first time an LC-MALDI interface based on the formation, processing and destruction of a segmented flow. The interface consists of a droplet-generator to fractionate LC effluent into nL-volume droplets and a deposition probe that transfers the sample (and MALDI matrix) onto a conventional MALDI-MS target. The efficacy of the method is demonstrated through the analysis of Trypsin digests of both BSA and Cytochrome C, with a 50% enhancement in analytical performance when compared to conventional interface technology.
基质辅助激光解吸电离(MALDI)质谱与上游分析分离(如液相色谱和电泳)的结合,为自动化研究复杂蛋白质和肽混合物开辟了新的机会。以这种方式高效分析复杂蛋白质组混合物的能力主要取决于在分离柱中离开时保留样品成分的空间分辨能力。目前的接口方法在这方面存在问题,因为最小分数体积限制在几微升。本文首次展示了基于分段流的形成、处理和破坏的 LC-MALDI 接口。该接口由一个液滴发生器组成,用于将 LC 流出物分成 nL 体积的液滴,以及一个沉积探针,将样品(和 MALDI 基质)转移到常规 MALDI-MS 靶上。该方法的有效性通过对 BSA 和细胞色素 C 的胰蛋白酶消化物的分析得到证明,与传统接口技术相比,分析性能提高了 50%。