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Fast Determination of Absolute Metabolite Concentrations by Spatially Encoded 2D NMR: Application to Breast Cancer Cell Extracts

机译:通过空间编码的2D NMR快速测定绝对代谢物浓度:在乳腺​​癌细胞提取物中的应用

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Two-dimensional nuclear magnetic resonance (2D NMR) forms a powerful tool for the quantitative analysis of complex mixtures such as samples of metabolic relevance. However, its use for quantitative purposes is far from being trivial, not only because of the associated experiment time, but also due to its subsequent high sensitivity to hardware instabilities affecting its precision. In this paper, an alternative approach is considered to measure absolute metabolite concentrations in complex mixtures with a high precision in a reasonable time. It is based on a "multi-scan single shot" (M3S) strategy, which is derived from the ultrafast 2D NMR methodology. First, the analytical performance of this methodology is compared to the one of conventional 2D NMR. 2D correlation spectroscopy (COSY) spectra are obtained in 10 min on model metabolic mixtures, with a precision in the 1-4% range (versus 5-18% for the conventional approach). The M3S approach also shows a better linearity than its conventional counterpart. It ensures that accurate quantitative results can be obtained provided that a calibration procedure is carried out. The M3S COSY approach is then applied to measure the absolute metabolite concentration in three breast cancer cell line extracts, relying on a standard addition protocol. M3S COSY spectra of such extracts are recorded in 20 min and give access to the absolute concentration of 14 major metabolites, showing significant differences between cell lines.
机译:二维核磁共振(2D NMR)形成了用于定量分析复杂混合物(例如代谢相关性样品)的强大工具。但是,将其用于定量的目的绝非易事,不仅因为相关的实验时间,而且还由于其随后对影响其精度的硬件不稳定性的高度敏感性。在本文中,考虑了一种替代方法来在合理的时间内以高精度测量复杂混合物中的绝对代谢物浓度。它基于“多扫描单发”(M3S)策略,该策略源自超快2D NMR方法。首先,将该方法的分析性能与常规2D NMR进行了比较。在模型代谢混合物中,可在10分钟内获得2D相关光谱(COSY)光谱,其精度在1-4%的范围内(传统方法为5-18%)。 M3S方法还显示出比常规方法更好的线性度。如果执行了校准程序,它可以确保获得准确的定量结果。然后,依靠标准添加方案,将M3S COZY方法应用于三种乳腺癌细胞系提取物中的绝对代谢物浓度测量。此类提取物的M3S COZY光谱在20分钟内记录下来,可获取14种主要代谢产物的绝对浓度,表明细胞系之间存在显着差异。

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