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Sheathless Capillary Electrophoresis–Mass Spectrometry for Metabolic Profiling of Biological Samples

机译:无鞘毛细管电泳-质谱法用于生物样品的代谢谱分析

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摘要

In metabolomics, a wide range of analytical techniques is used for the global profiling of (endogenous) metabolites in complex samples. In this paper, a protocol is presented for the analysis of anionic and cationic metabolites in biological samples by capillary electrophoresis–mass spectrometry (CE-MS). CE is well-suited for the analysis of highly polar and charged metabolites as compounds are separated on the basis of their charge-to-size ratio. A recently developed sheathless interfacing design, i.e., a porous tip interface, is used for coupling CE to electrospray ionization (ESI) MS. This interfacing approach allows the effective use of the intrinsically low-flow property of CE in combination with MS, resulting in nanomolar detection limits for a broad range of polar metabolite classes. The protocol presented here is based on employing a bare fused-silica capillary with a porous tip emitter at low-pH separation conditions for the analysis of a broad array of metabolite classes in biological samples. It is demonstrated that the same sheathless CE-MS method can be used for the profiling of cationic metabolites, including amino acids, nucleosides and small peptides, or anionic metabolites, including sugar phosphates, nucleotides and organic acids, by only switching the MS detection and separation voltage polarity. Highly information-rich metabolic profiles in various biological samples, such as urine, cerebrospinal fluid and extracts of the glioblastoma cell line, can be obtained by this protocol in less than 1 hr of CE-MS analysis.
机译:在代谢组学中,广泛的分析技术用于复杂样品中(内源性)代谢物的总体分析。在本文中,提出了一种通过毛细管电泳质谱法(CE-MS)分析生物样品中阴离子和阳离子代谢物的方案。 CE非常适合分析高极性和带电荷的代谢物,因为化合物是根据其电荷大小比进行分离的。最近开发的无护套接口设计,即多孔尖端接口,用于将CE耦合到电喷雾电离(ESI)MS。这种接口方法可有效利用CE与MS相结合的固有的低流量特性,从而为多种极性代谢物类别提供纳摩尔检测限。本文介绍的方案基于在低pH分离条件下使用裸露的熔融石英毛细管和多孔尖端发射器对生物样品中各种代谢物类别进行分析。结果表明,仅通过切换质谱检测器和质谱仪,即可将相同的无鞘CE-MS方法用于阳离子代谢物(包括氨基酸,核苷和小肽)或阴离子代谢物(包括糖磷酸酯,核苷酸和有机酸)的分析。分离电压极性。通过该方案,可以在不到1小时的CE-MS分析中获得各种生物样品(如尿液,脑脊液和胶质母细胞瘤细胞系提取物中)中高度信息丰富的代谢谱。

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