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使用离子对高效液相色谱法和超高效液相色谱法与串联质谱联用对极性细胞内代谢物进行靶向分析:在血清、尿液和组织提取物中的应用。

Targeted profiling of polar intracellular metabolites using ion-pair-high performance liquid chromatography and -ultra high performance liquid chromatography coupled to tandem mass spectrometry: applications to serum, urine and tissue extracts.

作者信息

Michopoulos Filippos, Whalley Nicky, Theodoridis Georgios, Wilson Ian D, Dunkley Tom P J, Critchlow Susan E

机构信息

Oncology iMED, Alderley Park, Macclesfield, Cheshire SK10 4TG, UK; Department of Chemistry, Aristotle University of Thessaloniki, 541 24 Thessaloniki, Greece.

Oncology iMED, Alderley Park, Macclesfield, Cheshire SK10 4TG, UK.

出版信息

J Chromatogr A. 2014 Jul 4;1349:60-8. doi: 10.1016/j.chroma.2014.05.019. Epub 2014 May 12.

Abstract

The effective analysis of polar ionic metabolites by LC-MS, such as those encountered in central carbon metabolism, represents a major problem for metabolic profiling that is not adequately addressed using strategies based on either reversed-phase or HILIC methods. Here we have compared analysis of central carbon metabolites on optimized methods using HILIC, porous graphitic carbon or ion pair chromatography (IPC) using tributyl ammonium as IP reagent. Of the 3 chromatographic approaches examined only IPC enabled us to obtain a robust analytical methodology. This system was used to profile more than a hundred endogenous metabolic intermediates in urine, serum and tissue samples. However, whilst we found IPC to be the best of the approaches examined considerable care was still needed to obtain robust data. Thus, in excess of 40 of representative biological samples were needed to "condition" a new analytical column and further 10 matrix injections were then required at the beginning of each analytical batch in order to obtain robust and reproducible chromatographic separations. An additional limitation that we have found was that, for a small number of phosphorylated and poly carboxylic acid metabolites, measurement was only possible if the analytes were present in relatively high concentrations. We also found that, whilst this methodology could be used for the analysis of both in vitro cell culture media, cell extracts, tissue, and biological fluids (blood, urine), for the best results columns should only be used to analyze a single matrix. However, despite the need for extensive column conditioning, and the manifold disadvantages resulting from the contamination of the separation system and mass spectrometer with the ion pair reagent, IPC-MS currently provides the best means of analyzing these polar, ionic and problematic metabolites.

摘要

通过液相色谱 - 质谱联用(LC - MS)对极性离子代谢物进行有效分析,例如在中心碳代谢中遇到的那些代谢物,对于代谢谱分析来说是一个主要问题,使用基于反相或亲水作用色谱(HILIC)方法的策略无法充分解决。在这里,我们比较了使用HILIC、多孔石墨化碳或使用三丁基铵作为离子对试剂的离子对色谱法(IPC)对中心碳代谢物的优化分析方法。在所研究的三种色谱方法中,只有IPC使我们能够获得一种可靠的分析方法。该系统用于分析尿液、血清和组织样本中的一百多种内源性代谢中间体。然而,虽然我们发现IPC是所研究方法中最好的,但仍需要格外小心才能获得可靠的数据。因此,需要超过40个代表性生物样品来“预处理”一根新的分析柱,并且在每个分析批次开始时还需要再进行10次基质进样,以便获得可靠且可重复的色谱分离。我们发现的另一个限制是,对于少数磷酸化和多元羧酸代谢物,只有当分析物以相对较高的浓度存在时才能进行测量。我们还发现,虽然这种方法可用于分析体外细胞培养基、细胞提取物、组织和生物流体(血液、尿液),但为了获得最佳结果,柱子应仅用于分析单一基质。然而,尽管需要对柱子进行广泛的预处理,并且离子对试剂会污染分离系统和质谱仪从而带来诸多不利影响,但目前IPC - MS是分析这些极性、离子性且有问题的代谢物的最佳方法。

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