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癌症研究中的常压质谱分析

Ambient Mass Spectrometry in Cancer Research.

作者信息

Takats Z, Strittmatter N, McKenzie J S

机构信息

Imperial College London, London, United Kingdom.

Drug Safety and Metabolism, AstraZeneca, Cambridge, United Kingdom.

出版信息

Adv Cancer Res. 2017;134:231-256. doi: 10.1016/bs.acr.2016.11.011. Epub 2016 Dec 29.

Abstract

Ambient ionization mass spectrometry was developed as a sample preparation-free alternative to traditional MS-based workflows. Desorption electrospray ionization (DESI)-MS methods were demonstrated to allow the direct analysis of a broad range of samples including unaltered biological tissue specimens. In contrast to this advantageous feature, nowadays DESI-MS is almost exclusively used for sample preparation intensive mass spectrometric imaging (MSI) in the area of cancer research. As an alternative to MALDI, DESI-MSI offers matrix deposition-free experiment with improved signal in the lower (<500m/z) range. DESI-MSI enables the spatial mapping of tumor metabolism and has been broadly demonstrated to offer an alternative to frozen section histology for intraoperative tissue identification and surgical margin assessment. Rapid evaporative ionization mass spectrometry (REIMS) was developed exclusively for the latter purpose by the direct combination of electrosurgical devices and mass spectrometry. In case of the REIMS technology, aerosol particles produced by electrosurgical dissection are subjected to MS analysis, providing spectral information on the structural lipid composition of tissues. REIMS technology was demonstrated to give real-time information on the histological nature of tissues being dissected, deeming it an ideal tool for intraoperative tissue identification including surgical margin control. More recently, the method has also been used for the rapid lipidomic phenotyping of cancer cell lines as it was demonstrated in case of the NCI-60 cell line collection.

摘要

常压电离质谱技术是作为一种无需样品制备的方法而开发的,可替代传统的基于质谱的工作流程。解吸电喷雾电离(DESI)-质谱方法已被证明能够直接分析包括未改变的生物组织标本在内的多种样品。与这一优势特征形成对比的是,如今DESI-质谱几乎仅用于癌症研究领域中需要大量样品制备的质谱成像(MSI)。作为基质辅助激光解吸电离(MALDI)的替代方法,DESI-MSI提供了无需基质沉积的实验,在较低(<500m/z)范围内具有更好的信号。DESI-MSI能够对肿瘤代谢进行空间映射,并且已被广泛证明可替代冷冻切片组织学用于术中组织识别和手术切缘评估。快速蒸发电离质谱(REIMS)专门为此目的而开发,它是通过将电外科设备与质谱直接结合而成。对于REIMS技术,电外科解剖产生的气溶胶颗粒会进行质谱分析,提供有关组织结构脂质组成的光谱信息。REIMS技术已被证明能够提供有关正在解剖的组织的组织学性质的实时信息,使其成为术中组织识别(包括手术切缘控制)的理想工具。最近,该方法也已用于癌细胞系的快速脂质组学表型分析,如在NCI-60细胞系收集中所证明的那样。

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