Sasić Slobodan
Pfizer, Analytical Research and Development, Groton, Connecticut 06340, USA.
Appl Spectrosc. 2008 Aug;62(8):840-6. doi: 10.1366/000370208785284439.
Two-dimensional (2D) correlation analysis has been used in this study to identify changes in complex nuclear magnetic resonance (NMR) metabonomics spectra of rat urine samples obtained during a study in which vasculitis (vascular injury), an important safety element in preclinical trials, was induced. Two types of correlation analysis were performed, along the variables and along the samples, and both 2D covariance and correlation coefficient maps were calculated. The binned and ''raw'' NMR spectra were analyzed (0.04 and 0.001 ppm resolution, respectively). Good correlation was found among the major peaks of the binned spectra, and two groups of samples were identified using sample-sample 2D correlation maps. Much more complex correlation features were obtained from the ''raw'' spectra, in which the specific, butterfly-like patterns were obtained in the covariance map but with only a few significant correlation coefficients in the corresponding 2D correlation maps. In terms of classification, the same group of the last nine spectra that indicated the end of the process and clustered in the 2D sample-sample covariance map of the binned data was also found in the 2D sample-sample covariance map of the raw NMR spectra but, again, not in the 2D correlation coefficient map. A discussion is given on the details of the application of the correlation analysis with regard to spectral data resolution, alignment, the effect of actual intensities of the NMR signal, and reference to various results from 2D correlation analysis of vibrational spectra.
本研究采用二维(2D)相关分析,以识别在一项诱导血管炎(血管损伤,临床前试验中的重要安全因素)的研究过程中所采集的大鼠尿液样本的复杂核磁共振(NMR)代谢组学光谱的变化。进行了两种类型的相关分析,即沿变量和沿样本进行分析,并计算了二维协方差图和相关系数图。对分箱后的NMR光谱和“原始”NMR光谱进行了分析(分辨率分别为0.04和0.001 ppm)。在分箱光谱的主要峰之间发现了良好的相关性,并使用样本-样本二维相关图识别出两组样本。从“原始”光谱中获得了更为复杂的相关特征,其中在协方差图中获得了特定的蝴蝶状图案,但在相应的二维相关图中只有少数显著的相关系数。在分类方面,在原始NMR光谱的二维样本-样本协方差图中也发现了表示过程结束并聚集在分箱数据的二维样本-样本协方差图中的最后九张光谱中的同一组,但同样不在二维相关系数图中。本文讨论了相关分析在光谱数据分辨率、校准、NMR信号实际强度的影响以及参考振动光谱二维相关分析的各种结果等方面的应用细节。