Adutwum Lawrence A, Kwao Joanna Koryo, Harynuk James J
Department of Pharmaceutical Chemistry, University of Ghana, Accra, Ghana.
Department of Chemistry, University of Alberta, Edmonton, Alberta, Canada.
J Sep Sci. 2021 Jul;44(14):2773-2784. doi: 10.1002/jssc.202001127. Epub 2021 May 31.
Comprehensive gas chromatography with time of flight mass spectrometry is a powerful tool in the analysis of complex samples. Chemometric analysis of raw chromatographic data is more useful in one- and two-dimensional separations relative to peak tables. The data volume from such experiments generally necessitates the use of data reduction tools. Such tools often sacrifice some of the multivariate information in the mass to charge ratio dimension. The unique ion filter reduces the over-redundancy in two-dimensional gas chromatography-mass spectrometry data by limiting the data to a few unique/pseudo-unique ions, sub-peaks/slices in the first dimension, and spectra in the second dimension. We explore the performance of this algorithm through careful inspection of two-dimensional gas chromatography-mass spectrometry data before and after application of the filter. A reduction (99%) in the number of variables in a two-dimensional gas chromatography-mass spectrometry chromatogram passed on to subsequent analysis was observed. Feature selection times for model optimization reduced from 229 (±13) to 6.8 (±0.5) min when the filter was applied. An estimate of two unique/pseudo-unique ions, one sub-peak in the first dimension and five spectra in the second dimension were considered to provide a true representation of each chromatogram and provided enough information to achieve 100% model prediction accuracy.
综合气相色谱-飞行时间质谱法是分析复杂样品的有力工具。相对于峰表而言,对原始色谱数据进行化学计量学分析在一维和二维分离中更有用。此类实验产生的数据量通常需要使用数据缩减工具。此类工具往往会牺牲质荷比维度中的一些多变量信息。独特离子过滤器通过将数据限制为少数独特/准独特离子、一维中的子峰/切片以及二维中的光谱,减少了二维气相色谱-质谱数据中的过度冗余。我们通过仔细检查应用过滤器前后的二维气相色谱-质谱数据来探索该算法的性能。观察到传递给后续分析的二维气相色谱-质谱色谱图中的变量数量减少了99%。应用过滤器后,模型优化的特征选择时间从229(±13)分钟减少到6.8(±0.5)分钟。认为二维中的两个独特/准独特离子、一维中的一个子峰和五个光谱的估计值能够真实反映每个色谱图,并提供了足够的信息以实现100%的模型预测准确性。