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化学和生物流体的零场至低场弛豫测量法

Zero- to low-field relaxometry of chemical and biological fluids.

作者信息

Alcicek Seyma, Put Piotr, Kubrak Adam, Alcicek Fatih Celal, Barskiy Danila, Gloeggler Stefan, Dybas Jakub, Pustelny Szymon

机构信息

Goethe University Frankfurt, University Hospital, Institute of Neuroradiology, 60528, Frankfurt am Main, Germany.

Institute of Physics Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University in Kraków, 30-348, Kraków, Poland.

出版信息

Commun Chem. 2023 Aug 4;6(1):165. doi: 10.1038/s42004-023-00965-8.

Abstract

Nuclear magnetic resonance (NMR) relaxometry is an analytical method that provides information about molecular environments, even for NMR "silent" molecules (spin-0), by analyzing the properties of NMR signals versus the magnitude of the longitudinal field. Conventionally, this technique is performed at fields much higher than Earth's magnetic field, but our work focuses on NMR relaxometry at zero and ultra-low magnetic fields (ZULFs). Operating under such conditions allows us to investigate slow (bio)chemical processes occurring on a timescale from milliseconds to seconds, which coincide with spin evolution. ZULFs also minimize T line broadening in heterogeneous samples resulting from magnetic susceptibility. Here, we use ZULF NMR relaxometry to analyze (bio)chemical compounds containing H-C, H-N, and H-P spin pairs. We also detected high-quality ULF NMR spectra of human whole-blood at 0.8 μT, despite a shortening of spin relaxation by blood proteomes (e.g., hemoglobin). Information on proton relaxation times of blood, a potential early biomarker of inflammation, can be acquired in under a minute using inexpensive, portable/small-size NMR spectrometers based on atomic magnetometers.

摘要

核磁共振(NMR)弛豫测量法是一种分析方法,通过分析NMR信号特性与纵向磁场强度的关系,即使对于NMR“沉默”分子(自旋为0)也能提供有关分子环境的信息。传统上,该技术在远高于地球磁场的场强下进行,但我们的工作重点是零磁场和超低磁场(ZULF)下的NMR弛豫测量法。在这种条件下操作使我们能够研究发生在从毫秒到秒的时间尺度上的缓慢(生物)化学过程,这与自旋演化相吻合。ZULF还能最大限度地减少由磁化率导致的非均匀样品中T2线展宽。在这里,我们使用ZULF NMR弛豫测量法来分析含有H-C、H-N和H-P自旋对的(生物)化学化合物。我们还检测到了在0.8μT下人体全血的高质量超低场NMR光谱,尽管血液蛋白质组(如血红蛋白)会缩短自旋弛豫时间。使用基于原子磁力计的廉价、便携式/小型NMR光谱仪,在不到一分钟的时间内就能获取有关血液质子弛豫时间的信息,而血液质子弛豫时间是炎症的一种潜在早期生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b734/10403525/f800eea54609/42004_2023_965_Fig1_HTML.jpg

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