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有机(电喷雾和大气压化学电离)质谱技术与液相分离联用进行形态分析的潜力。

The potential of organic (electrospray- and atmospheric pressure chemical ionisation) mass spectrometric techniques coupled to liquid-phase separation for speciation analysis.

作者信息

Rosenberg Erwin

机构信息

Vienna University of Technology, Institute of Chemical Technology and Analytics, Getreidemarkt 91164 AC, A-1060 Vienna, Austria.

出版信息

J Chromatogr A. 2003 Jun 6;1000(1-2):841-89. doi: 10.1016/s0021-9673(03)00603-4.

Abstract

The use of mass spectrometry based on atmospheric pressure ionisation techniques (atmospheric pressure chemical ionisation, APCI, and electrospray ionisation, ESI) for speciation analysis is reviewed with emphasis on the literature published in and after 1999. This report accounts for the increasing interest that atmospheric pressure ionisation techniques, and in particular ESI, have found in the past years for qualitative and quantitative speciation analysis. In contrast to element-selective detectors, organic mass spectrometric techniques provide information on the intact metal species which can be used for the identification of unknown species (particularly with MS-MS detection) or the confirmation of the actual presence of species in a given sample. Due to the complexity of real samples, it is inevitable in all but the simplest cases to couple atmospheric pressure MS detection to a separation technique. Separation in the liquid phase (capillary electrophoresis or liquid chromatography in reversed phase, ion chromatographic or size-exclusion mode) is particularly suitable since the available techniques cover a very wide range of analyte polarities and molecular mass. Moreover, derivatisation can normally be avoided in liquid-phase separation. Particularly in complex environmental or biological samples, separation in one dimension is not sufficient for obtaining adequate resolution for all relevant species. In this case, multi-dimensional separation, based on orthogonal separation techniques, has proven successful. ESI-MS is also often used in parallel with inductively coupled plasma MS detection. This review is structured in two parts. In the first, the fundamentals of atmospheric pressure ionisation techniques are briefly reviewed. The second part of the review discusses recent applications including redox species, use of ESI-MS for structural elucidation of metal complexes, characterisation and quantification of small organometallic species with relevance to environment, health and food. Particular attention is given to the characterisation of biomolecules and metalloproteins (metallothioneins and phytochelatins) and to the investigation of the interaction of metals and biomolecules. Particularly in the latter field, ESI-MS is the ideal technique due to the softness of the ionisation process which allows to assume that the detected gas-phase ions are a true representation of the ions or ion-biomolecule complexes prevalent in solution. It is particularly this field, important to biochemistry, physiology and medical chemistry, where we can expect significant developments also in the future.

摘要

本文综述了基于大气压电离技术(大气压化学电离,APCI,以及电喷雾电离,ESI)的质谱法在形态分析中的应用,重点关注1999年及以后发表的文献。本报告阐述了近年来大气压电离技术,尤其是ESI,在定性和定量形态分析中日益增长的关注度。与元素选择性检测器不同,有机质谱技术提供了关于完整金属物种的信息,这些信息可用于鉴定未知物种(特别是通过串联质谱检测)或确认给定样品中物种的实际存在情况。由于实际样品的复杂性,除了最简单的情况外,将大气压质谱检测与分离技术联用是不可避免的。液相分离(毛细管电泳或反相液相色谱、离子色谱或尺寸排阻模式)特别适用,因为现有技术涵盖了非常广泛的分析物极性和分子量范围。此外,在液相分离中通常可以避免衍生化。特别是在复杂的环境或生物样品中,一维分离不足以对所有相关物种获得足够的分辨率。在这种情况下,基于正交分离技术的多维分离已被证明是成功的。ESI-MS也经常与电感耦合等离子体质谱检测并行使用。本综述分为两部分。第一部分简要回顾了大气压电离技术的基本原理。综述的第二部分讨论了近期的应用,包括氧化还原物种、利用ESI-MS对金属配合物进行结构解析、对与环境、健康和食品相关的小有机金属物种进行表征和定量。特别关注生物分子和金属蛋白(金属硫蛋白和植物螯合肽)的表征以及金属与生物分子相互作用的研究。特别是在后一个领域,ESI-MS是理想的技术,因为电离过程的温和性使得可以假定检测到的气相离子是溶液中普遍存在的离子或离子 - 生物分子复合物的真实代表。正是在这个对生物化学、生理学和医学化学都很重要的领域,我们有望在未来也取得重大进展。

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