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中性解吸采样与萃取电喷雾电离质谱联用,通过代谢组学指纹图谱快速区分生物样品。

Neutral desorption sampling coupled to extractive electrospray ionization mass spectrometry for rapid differentiation of biosamples by metabolomic fingerprinting.

作者信息

Chen Huanwen, Wortmann Arno, Zenobi Renato

机构信息

Department of Chemistry and Applied Biosciences, ETH Zurich, CH-8093, Zürich, Switzerland.

出版信息

J Mass Spectrom. 2007 Sep;42(9):1123-35. doi: 10.1002/jms.1282.

Abstract

It is of increasing interest and practical importance to develop convenient methods based on mass spectrometry for high-throughput analyses of biological samples. This is usually difficult because of the complex matrix and ion suppression effects. Generation of ions at ambient conditions is a promising solution to these problems because the sample is easily accessible and the ion suppression effect is reduced significantly. A new method for rapid on-line detection of metabolic markers in complex biological samples is described here. It combines atmospheric pressure desorption sampling by a gentle stream of air or nitrogen with extractive electrospray ionization (EESI) and mass spectrometric analysis. The resulting mass spectral fingerprints are shown to be able to detect spoilage of meat even in the frozen (-20 degrees C) state and the contamination of spinach by E. coli, and to identify metabolites and contaminants on human skin within seconds, in an on-line and high-throughput fashion. Typical molecular markers are identified using MS/MS data and by comparison with reference compounds. Differences between closely related samples are easily visualized by using principal component analysis (PCA) of the mass spectra data. The detection limit achieved is 10 fg/cm2 (S/N = 3) for histamine on the surface of frozen meat. The technique reported here shows potential for more advanced applications in multiple disciplines, including food regulation, homeland security, in vivo metabolomics, and clinical diagnosis.

摘要

开发基于质谱的便捷方法用于生物样品的高通量分析,正变得越来越受关注且具有实际重要性。由于复杂的基质和离子抑制效应,这通常很困难。在环境条件下产生离子是解决这些问题的一个有前景的方法,因为样品易于获取且离子抑制效应显著降低。本文描述了一种用于快速在线检测复杂生物样品中代谢标志物的新方法。它将通过温和的空气流或氮气流进行的大气压解吸采样与萃取电喷雾电离(EESI)和质谱分析相结合。结果表明,所得的质谱指纹图谱能够在线且高通量地检测即使处于冷冻(-20摄氏度)状态的肉类变质以及菠菜被大肠杆菌污染的情况,并能在几秒钟内识别出人体皮肤上的代谢物和污染物。使用MS/MS数据并与参考化合物进行比较来鉴定典型的分子标志物。通过对质谱数据进行主成分分析(PCA),可以轻松地可视化密切相关样品之间的差异。对于冷冻肉表面的组胺,实现的检测限为10 fg/cm2(S/N = 3)。本文报道的这项技术在包括食品监管、国土安全、体内代谢组学和临床诊断在内的多个学科中显示出在更高级应用方面的潜力。

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