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Absolute Minimal Sampling of Homonuclear 2D NMR TOCSY Spectra for High-Throughput Applications of Complex Mixtures

机译:复杂混合物高通量应用的全核二维NMR TOCSY光谱的绝对最小采样

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摘要

Modern applications of 2D NMR spectroscopy to diagnostic screening, metabolomics, quality control, and other high-throughput applications are often limited by the time-consuming sampling requirements along the indirect time domain t1. 2D Total Correlation Spectroscopy (TOCSY) provides unique spin-connectivity information for the analysis of a large number of compounds in complex mixtures, but standard methods typically require >100 t1-increments for an accurate spectral reconstruction, rendering these experiments ineffective for high-throughput applications. Here, we demonstrate for a complex metabolite mixture how absolute minimal sampling (AMS), based on direct fitting of resonance frequencies and amplitudes in the time domain, yields an accurate spectral reconstruction of TOCSY spectra using as few as 16 t1-points. This permits the rapid collection of homonuclear 2D NMR experiments at high resolution with measurement times that previously were the realm of 1D experiments only.
机译:二维NMR光谱在诊断筛选,代谢组学,质量控制和其他高通量应用中的现代应用通常受到沿间接时域t1的耗时采样要求的限制。二维总相关光谱(TOCSY)为分析复杂混合物中的大量化合物提供了独特的自旋连接性信息,但是标准方法通常需要> 100 t1增量才能进行准确的光谱重建,从而使这些实验对高通量无效应用程序。在这里,我们展示了一种复杂的代谢物混合物,如何基于时域中共振频率和振幅的直接拟合,基于绝对最小采样(AMS),使用少至16个t1点就能精确地重构TOCSY光谱。这样就可以高分辨率快速收集同核2D NMR实验,而测量时间以前只是1D实验的范围。

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