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可传输的超极化代谢物。

Transportable hyperpolarized metabolites.

机构信息

Ecole Polytechnique Fédérale de Lausanne, Institut des Sciences et Ingénierie Chimiques, Lausanne 1015, Switzerland.

Univ Lyon, CNRS, Université Claude Bernard Lyon 1, ENS de Lyon, Institut des Sciences Analytiques, UMR 5280, 5 rue de la Doua, 69100 Villeurbanne, France.

出版信息

Nat Commun. 2017 Jan 10;8:13975. doi: 10.1038/ncomms13975.

Abstract

Nuclear spin hyperpolarization of C-labelled metabolites by dissolution dynamic nuclear polarization can enhance the NMR signals of metabolites by several orders of magnitude, which has enabled in vivo metabolic imaging by MRI. However, because of the short lifetime of the hyperpolarized magnetization (typically <1 min), the polarization process must be carried out close to the point of use. Here we introduce a concept that markedly extends hyperpolarization lifetimes and enables the transportation of hyperpolarized metabolites. The hyperpolarized sample can thus be removed from the polarizer and stored or transported for use at remote MRI or NMR sites. We show that hyperpolarization in alanine and glycine survives 16 h storage and transport, maintaining overall polarization enhancements of up to three orders of magnitude.

摘要

通过溶解动态核极化技术,可以将 C 标记代谢物的核自旋超极化,将代谢物的 NMR 信号增强几个数量级,从而实现 MRI 下的代谢物活体成像。然而,由于超极化磁化强度的寿命很短(通常 <1 分钟),极化过程必须在接近使用点进行。在这里,我们介绍了一种显著延长超极化寿命并实现超极化代谢物运输的概念。这样,超极化的样品可以从极化器中取出,进行储存或运输,以供在远程 MRI 或 NMR 站点使用。我们表明,丙氨酸和甘氨酸的超极化在储存和运输 16 小时后仍然存在,保持了高达三个数量级的整体极化增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3232/5234073/279832e6d709/ncomms13975-f1.jpg

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