首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Untargeted LC/MS-based metabolic phenotyping (metabonomics/metabolomics): The state of the art
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Untargeted LC/MS-based metabolic phenotyping (metabonomics/metabolomics): The state of the art

机译:未确定的LC / MS基于代谢表型(代谢型/代谢组织):最先进的

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摘要

Liquid chromatography (LC) hyphenated to mass spectrometry is currently the most widely used means of determining metabolic phenotypes via both untargeted and targeted analysis. At present a range of analytical separations, including reversed-phase, hydrophilic interaction and ion-pair LC are employed to maximise metabolome coverage with ultra (high) performance liquid chromatography (UHPLC) increasingly displacing conventional high performance liquid chromatography because of the need for short analysis times and high peak capacity in such applications. However, it is widely recognized that these methodologies do not entirely solve the problems facing researchers trying to perform comprehensive metabolic phenotyping and in addition to these "routine" approaches there are continuing investigations of alternative separation methods including 2-dimensional/multi column approaches. These involve either new stationary phases or multidimensional combinations of the more conventional materials currently used, as well as application of miniaturization or "new" approaches such as supercritical HP and UHP- chromatographic separations. There is also a considerable amount of interest in the combination of chromatographic and ion mobility separations, with the latter providing both an increase in resolution and the potential to provide additional structural information via the determination of molecular collision cross section data. However, key problems remain to be solved including ensuring quality, comparability across different laboratories and the ever present difficulty of identifying unknowns.
机译:液相色谱(LC)连字质谱法是目前最广泛使用的方法通过未明确和靶向分析来确定代谢表型。目前,包括反相,亲水性相互作用和离子对Lc的一系列分析分离,用于最大化代谢物覆盖率,具有超(高)性液相色谱(UHPLC)越来越多地置换常规的高效液相色谱,因为需要短这些应用中的分析时间和高峰容量。然而,众所周知,这些方法不完全解决试图进行综合代谢表型的研究人员面临的问题,并且除了这些“常规”方法之外,还在继续研究包括二维/多列方法的替代分离方法。这些涉及目前使用的更常规材料的新的固定阶段或多维组合,以及施加小型化或“新”方法,如超临界HP和UHP-色谱分离。在色谱和离子迁移率分离的组合中也存在相当大的兴趣,并且后者通过确定分子碰撞横截面数据来提供分辨率的增加和电位,以提供额外的结构信息。然而,关键问题仍有待解决,包括确保不同实验室的质量,相比的可比性以及识别未知的难度。

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