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Singlet-filtered NMR spectroscopy

机译:单线滤波的NMR光谱

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Selectively studying parts of proteins and metabolites in tissue with nuclear magnetic resonance promises new insights into molecular structures or diagnostic approaches. Nuclear spin singlet states allow the selection of signals from chemical moieties of interest in proteins or metabolites while suppressing background signal. This selection process is based on the electron-mediated coupling between two nuclear spins and their difference in resonance frequency. We introduce a generalized and versatile pulsed NMR experiment that allows populating singlet states on a broad scale of coupling patterns. This approach allowed us to filter signals from proton pairs in the Alzheimer’s disease–related b-amyloid 40 peptide and in metabolites in brain matter. In particular, for glutamine/glutamate, we have discovered a long-lived state in tissue without the typically required singlet sustaining by radiofrequency irradiation. We believe that these findings will open up new opportunities to study metabolites with a view on future in vivo applications.
机译:选择性地研究与核磁共振的组织中的蛋白质和代谢物的部位有助于新的洞察分子结构或诊断方法。核旋转单线状态允许在抑制背景信号的同时选择来自蛋白质或代谢物的化学部分的信号。该选择过程基于两个核旋转之间的电子介导的耦合及其共振频率之间的差异。我们介绍了一个广义和多功能的脉冲NMR实验,允许填充单线状态的耦合图案的大规模。这种方法使我们能够在阿尔茨海默病相关的B-淀粉样蛋白40肽中的质子对和脑中代谢物中的质子对滤除来自质子对的信号。特别是对于谷氨酰胺/谷氨酸,我们已经在组织中发现了一种长期存在的状态,而没有通过射频照射的典型所需的单线。我们认为,这些调查结果将开辟新的机会,以便在体内应用中观察未来的代谢物。

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