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Heteronuclear ~1H-~(31)P Statistical Total Correlation NMR Spectroscopy of Intact Liver for Metabolic Biomarker Assignment: Application to Galactosamine-Induced Hepatotoxicity

机译:异核〜1H-〜(31)P统计的完整肝脏代谢生物标志物分配的总相关核磁共振波谱:在半乳糖胺诱导的肝毒性中的应用

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As part of our ongoing development of methods for enhanced biomarker information recovery from spectroscopic data we present the first example of a new hetero-nuclear statistical total correlation spectroscopy (HET-STOCSY) approach applied to intact tissue samples collected as part of a toxicological study. One-dimensional ~1H and ~(31)P-{~1H} magic angle spinning (MAS) NMR spectra of intact liver samples after galactosamine (galN) treatment to rats and after cotreatment of galN plus uridine were collected at 275 K. Individual samples were also followed by ~1H and ~(31)P-{~1H} MAS NMR through time generating time dependent modulations in metabolite signatures relating to toxicity. High-resolution ~1H NMR spectra of urine and plasma and clinical chemical data were also collected to establish a biological framework in which to place these novel statistical heterospectroscopic data. In HET-STOCSY, calculation of the covariance between the ~(31)P-{~1H} and ~1H NMR signals of phosphorus containing metabolites allows their molecular connectivities to be established and the construction of virtual two-dimensional heteronuclear correlation spectra that connect all protons on the molecule to the heteroatom. We show how HET-STOCSY applied to MAS NMR spectra of liver samples can be used to augment biomarker detection. This approach is generic and can be applied to correlate the covarying signals for any spin-active nuclei where there is parallel or serial collection of data.
机译:作为我们不断发展的从光谱数据中增强生物标志物信息恢复方法的一部分,我们介绍了一种新的异核统计总相关光谱(HET-STOCSY)方法的第一个实例,该方法适用于作为毒理学研究的一部分而收集的完整组织样品。在大鼠接受半乳糖胺(galN)处理以及与galN和尿苷共处理后,完整肝脏样品的一维〜1H和〜(31)P- {〜1H}魔角旋转(MAS)NMR谱图被收集。个体样品中还伴有〜1H和〜(31)P- {〜1H} MAS NMR,它们通过时间产生了与毒性有关的代谢物特征的时间依赖性调节。还收集了尿液和血浆的高分辨率〜1H NMR光谱以及临床化学数据,以建立一个生物学框架,在其中放置这些新颖的统计异光谱数据。在HET-STOCSY中,计算含磷代谢物的〜(31)P- {〜1H}和〜1H NMR信号之间的协方差可以建立它们的分子连接性,并建立虚拟的二维异核相关光谱杂原子分子上的所有质子。我们展示了如何将HET-STOCSY应用于肝脏样品的MAS NMR光谱可用于增强生物标志物检测。这种方法是通用的,可以用于关联任何具有并行或串行数据收集的自旋活性核的协变信号。

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