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当前使用液相色谱-质谱联用进行全球代谢组学样品制备的趋势和挑战。

Current trends and challenges in sample preparation for global metabolomics using liquid chromatography-mass spectrometry.

机构信息

Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, 160 College Street Room 940, Toronto M5S 3E1, Canada.

出版信息

Anal Bioanal Chem. 2012 Jun;403(6):1523-48. doi: 10.1007/s00216-012-6039-y. Epub 2012 May 12.

Abstract

The choice of sample-preparation method is extremely important in metabolomic studies because it affects both the observed metabolite content and biological interpretation of the data. An ideal sample-preparation method for global metabolomics should (i) be as non-selective as possible to ensure adequate depth of metabolite coverage; (ii) be simple and fast to prevent metabolite loss and/or degradation during the preparation procedure and enable high-throughput; (iii) be reproducible; and (iv) incorporate a metabolism-quenching step to represent true metabolome composition at the time of sampling. Despite its importance, sample preparation is often an overlooked aspect of metabolomics, so the focus of this review is to explore the role, challenges, and trends in sample preparation specifically within the context of global metabolomics by liquid chromatography-mass spectrometry (LC-MS). This review will cover the most common methods including solvent precipitation and extraction, solid-phase extraction and ultrafiltration, and discuss how to improve analytical quality and metabolite coverage in metabolomic studies of biofluids, tissues, and mammalian cells. Recent developments in this field will also be critically examined, including in vivo methods, turbulent-flow chromatography, and dried blood spot sampling.

摘要

在代谢组学研究中,选择样品制备方法非常重要,因为它会影响到观察到的代谢物含量和数据的生物学解释。一种理想的用于全局代谢组学的样品制备方法应该:(i)尽可能是非选择性的,以确保代谢物覆盖度足够深;(ii)简单快速,以防止在制备过程中代谢物的损失和/或降解,并能够实现高通量;(iii)可重现;以及 (iv)包含代谢物淬灭步骤,以在采样时代表真实的代谢组组成。尽管它很重要,但样品制备通常是代谢组学中被忽视的一个方面,因此,本篇综述的重点是通过液相色谱-质谱(LC-MS)专门探讨样品制备在全局代谢组学中的作用、挑战和趋势。本综述将涵盖最常见的方法,包括溶剂沉淀和提取、固相萃取和超滤,并讨论如何提高生物流体、组织和哺乳动物细胞代谢组学研究中的分析质量和代谢物覆盖度。还将批判性地检查该领域的最新进展,包括体内方法、湍流色谱和干血斑采样。

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