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On the applicability of comprehensive two-dimensional gas chromatography combined with a fast-scanning quadrupole mass spectrometer for untargeted large-scale metabolomics

机译:综合二维气相色谱法结合快速扫描四极杆质谱仪在无目标大规模代谢组学研究中的应用

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Comprehensive two-dimensional gas chromatography mass spectrometry (GC x GC-MS) offers excellent chromatographic separation performance and superior sensitivity. As such, it is eminently suitable for the analysis of complex biological samples. The applicability of a GC x GC instrument equipped with a fast-scanning qMS detector for large-scale untargeted metabolome analyses was investigated. We optimized the dimensions of an apolar x medium-polar column combination in order to meet detector requirements and to compromise between separation performance and analysis time. The final method enabled a sufficient separation (R >= 1.2 or higher) of approx. 90% of all analytes detected in urine within less than 1 h. Using the qMS at maximum scan speed (20,000 u/s) and choosing a scan range of m/z 60-550, a data acquisition frequency of 33 Hz and usually at least 10-13 data points per D-2 peak above the baseline were achieved. Peak area as well as peak height could thus be determined precisely (mean RSD 2.5%). Spectral skewing was limited regarding the data points covering the upper peak half. As a consequence, peak apex spectra could be used for the alignment of analytes in different samples. The linear dynamic range was 1-2.5 orders of magnitude, depending on the analyte. In addition, the slow transition into saturation beyond the linear dynamic range made it possible to exploit an extended "working range" for relative quantification. Long-term stability of the system was demonstrated by the analysis of more than 300 human urine study samples for which detailed repeatability and intermediate precision data are provided. In summary, the GC x GC-qMS system proved to be applicable for untargeted large scale metabolome analyses. (C) 2015 Elsevier B.V. All rights reserved.
机译:全面的二维气相色谱质谱仪(GC x GC-MS)具有出色的色谱分离性能和出色的灵敏度。因此,它非常适合分析复杂的生物样品。研究了配备快速扫描qMS检测器的GC x GC仪器在大规模非目标代谢组分析中的适用性。我们优化了非极性x中极性色谱柱组合的尺寸,以满足检测器要求并在分离性能和分析时间之间做出折衷。最终的方法可以使分离度足够大(R> = 1.2或更高)。在不到1小时的时间内,尿液中检测到的所有分析物中有90%。在最大扫描速度(20,000 u / s)下使用qMS并选择m / z 60-550的扫描范围,33 Hz的数据采集频率以及通常在基线以上的每个D-2峰至少10-13个数据点实现了。因此可以精确确定峰面积和峰高(平均RSD 2.5%)。关于覆盖上半峰的数据点,频谱倾斜受到限制。因此,峰顶点光谱可用于对齐不同样品中的分析物。线性动态范围为1-2.5个数量级,具体取决于分析物。另外,超出线性动态范围的缓慢过渡到饱和状态使得可以利用扩展的“工作范围”进行相对定量。通过分析300多个人类尿液研究样本证明了该系统的长期稳定性,这些样本提供了详细的重复性和中间精度数据。总之,GC x GC-qMS系统被证明可用于无目标的大规模代谢组分析。 (C)2015 Elsevier B.V.保留所有权利。

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