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毛细管电泳作为代谢组学工具,用于生物样品的非靶向指纹图谱分析。

Capillary electrophoresis as a metabolomics tool for non-targeted fingerprinting of biological samples.

机构信息

CEMBIO (Center for Metabolomics and Bioanalysis), Facultad de Farmacia, Universidad San Pablo-CEU, Campus Montepríncipe, Boadilla del Monte, 28668 Madrid, Spain.

出版信息

J Pharm Biomed Anal. 2011 Jun 25;55(4):823-31. doi: 10.1016/j.jpba.2011.02.001. Epub 2011 Mar 3.

Abstract

Metabolomics, understood as a data driven strategy trying to find markers of a situation under study without a priori hypothesis, has rapidly caught the attention and evolved from the simple pattern recognition strategy, which was a great innovation at its origins, to the interest for the final identification of markers responsible for class separation, i.e., from data to knowledge. Due to differences in physico-chemical properties and concentrations of the metabolites, but also due to differences in matrix properties, cross-platform approaches are proving to increase the capability of information. Once more techniques do not compete. This is the scene where capillary electrophoresis (CE) has its niche to provide information mainly on polar or ionic compounds in biological fluids. General advantages and disadvantages of CE for sample fingerprinting will be discussed and methods will be classified depending on the detection system (UV or MS) as this strongly affects all the conditions. Recent developments will be presented in different biological fluids, although urine is without a doubt the preferred sample for CE analysis.

摘要

代谢组学被理解为一种数据驱动的策略,旨在在没有先验假设的情况下寻找研究情况下的标志物,它迅速引起了人们的关注,并从最初的简单模式识别策略发展而来,这种策略是一个巨大的创新,人们对最终确定负责分类的标志物(即从数据到知识)产生了兴趣。由于代谢物的物理化学性质和浓度的差异,以及基质性质的差异,跨平台方法被证明可以增加信息的获取能力。不再是单项技术之间的竞争。在这个领域,毛细管电泳(CE)具有其优势,可以主要提供生物体液中极性或离子化合物的信息。将讨论 CE 用于样品指纹图谱的优缺点,并根据检测系统(UV 或 MS)对方法进行分类,因为这会强烈影响所有条件。将在不同的生物体液中介绍最新的发展,尽管尿液无疑是 CE 分析的首选样本。

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