Thermo Fisher Scientific, Hanna-Kunath-Str. 11, 28199 Bremen, Germany.
J Chromatogr A. 2010 Jun 18;1217(25):3938-45. doi: 10.1016/j.chroma.2010.02.022. Epub 2010 Feb 20.
The Orbitrap mass analyzer has become a mainstream mass spectrometry technique. In addition to providing a brief introduction to the Orbitrap technology and its continuing development, this article reviews the most recent publications quoting the use of the Orbitrap detection for a variety of chromatographic separation techniques. Its coupling to reversed-phase liquid chromatography (LC) represents undoubtedly the most ubiquitous approach to both small molecule and proteomic analyses. Multi-dimensional LC separations have an important role to play in the proteomics applications while an ultra-high-pressure LC is more frequently encountered in the area of metabolomics and metabolite analysis. Recently, special chromatographic techniques such as hydrophilic interaction chromatography and its variations have also been also cited with the Orbitrap detection.
轨道阱质谱分析技术已经成为主流的质谱技术之一。本文除了对轨道阱技术及其发展做简要介绍,还对近期引用轨道阱检测的文献进行综述,这些文献涉及各种色谱分离技术。轨道阱分析与反相液相色谱(LC)的联用无疑是小分子和蛋白质组学分析最常用的方法。多维 LC 分离在蛋白质组学应用中发挥着重要作用,而超高效 LC 在代谢组学和代谢物分析领域更为常见。最近,轨道阱检测也与一些特殊的色谱技术,如亲水作用色谱及其变化联用。