Sandra Koen, Moshir Mahan, D'hondt Filip, Verleysen Katleen, Kas Koen, Sandra Pat
Pronota NV, Technologiepark 4, VIB Bio-incubator, B-9052 Zwijnaarde/Ghent, Belgium.
J Chromatogr B Analyt Technol Biomed Life Sci. 2008 Apr 15;866(1-2):48-63. doi: 10.1016/j.jchromb.2007.10.034. Epub 2007 Oct 30.
Sample complexity and dynamic range constitute enormous challenges in proteome analysis. The back-end technology in typical proteomics platforms, namely mass spectrometry (MS), can only tolerate a certain complexity, has a limited dynamic range per spectrum and is very sensitive towards ion suppression. Therefore, component overlap has to be minimized for successful mass spectrometric analysis and subsequent protein identification and quantification. The present review describes the advances that have been made in liquid-based separation techniques with focus on the recent developments to boost the resolving power. The review is divided in two parts; the first part deals with unidimensional liquid chromatography and the second part with bi- and multidimensional liquid-based separation techniques. Part 1 mainly focuses on reversed-phase HPLC due to the fact that it is and will, in the near future, remain the technique of choice to be hyphenated with MS. The impact of increasing the column length, decreasing the particle diameter, replacing the traditional packed beds by monolithics, amongst others, is described. The review is complemented with data obtained in the laboratories of the authors.
样本复杂性和动态范围给蛋白质组分析带来了巨大挑战。典型蛋白质组学平台的后端技术,即质谱(MS),只能耐受一定的复杂性,每个谱的动态范围有限,并且对离子抑制非常敏感。因此,为了成功进行质谱分析以及后续的蛋白质鉴定和定量,必须将组分重叠降至最低。本综述描述了基于液相的分离技术所取得的进展,重点关注提高分离能力的最新发展。该综述分为两部分;第一部分涉及一维液相色谱,第二部分涉及二维和多维基于液相的分离技术。第1部分主要关注反相高效液相色谱,因为它现在是并且在不久的将来仍将是与质谱联用的首选技术。文中描述了增加柱长、减小粒径、用整体柱取代传统填充床等措施的影响。本综述还补充了作者实验室获得的数据。