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高通量连续流系统用于 SABRE 超极化。

High-throughput continuous-flow system for SABRE hyperpolarization.

机构信息

NMR Research Unit, Faculty of Science, University of Oulu, P.O. Box 3000, FI-90014, Finland.

Environmental and Chemical Engineering, Faculty of Technology, University of Oulu, FI-90014, Finland.

出版信息

J Magn Reson. 2019 Mar;300:8-17. doi: 10.1016/j.jmr.2019.01.003. Epub 2019 Jan 14.

Abstract

Signal Amplification By Reversible Exchange (SABRE) is a versatile method for hyperpolarizing small organic molecules that helps to overcome the inherent low signal-to-noise ratio of nuclear magnetic resonance (NMR) measurements. It offers orders of magnitude enhanced signal strength, but the obtained nuclear polarization usually rapidly relaxes, requiring a quick transport of the sample to the spectrometer. Here we report a new design of a polarizing system, which can be used to prepare a continuous flow of SABRE-hyperpolarized sample with a considerable throughput of several millilitres per second and a rapid delivery into an NMR instrument. The polarizer performance under different conditions such as flow rate of the hydrogen or liquid sample is tested by measuring a series of NMR spectra and magnetic resonance images (MRI) of hyperpolarized pyridine in methanol. Results show a capability to continuously produce sample with dramatically enhanced signal over two orders of magnitude. The constant supply of hyperpolarized sample can be exploited, e.g., in experiments requiring multiple repetitions, such as 2D- and 3D-NMR or MRI measurements, and also naturally allows measurements of flow maps, including systems with high flow rates, for which the level of achievable thermal polarization might not be usable any more. In addition, the experiments can be viably carried out in a non-deuterated solvent, due to the effective suppression of the thermal polarization by the fast sample flow. The presented system opens the possibilities for SABRE experiments requiring a long-term, stable and high level of nuclear polarization.

摘要

信号放大可逆交换(SABRE)是一种将小分子超极化的多功能方法,有助于克服核磁共振(NMR)测量中固有的低信噪比。它提供了数量级增强的信号强度,但获得的核极化通常会迅速弛豫,需要快速将样品传输到光谱仪。在这里,我们报告了一种新的极化系统设计,该系统可用于制备具有相当高的每秒几毫升的连续流动的 SABRE 超极化样品,并迅速输送到 NMR 仪器中。通过测量甲醇中极化吡啶的一系列 NMR 谱和磁共振图像(MRI),测试了在不同条件下(例如氢气或液体样品的流速)的极化器性能。结果表明,该系统具有连续产生信号增强两个数量级的能力。可连续提供超极化样品,例如在需要多次重复的实验中,例如二维和三维 NMR 或 MRI 测量,也可自然地进行流量图测量,包括流速较高的系统,对于这些系统,可能无法再使用可实现的热极化水平。此外,由于快速样品流动有效地抑制了热极化,因此该实验可以在非氘代溶剂中进行。所提出的系统为需要长期、稳定和高水平核极化的 SABRE 实验开辟了可能性。

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