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水溶液中富马酸的快速超极化和纯化。

Rapid hyperpolarization and purification of the metabolite fumarate in aqueous solution.

机构信息

Eduard-Zintl-Institute for Inorganic Chemistry and Physical Chemistry, Technical University Darmstadt, 64287 Darmstadt, Germany.

GSI Helmholtzzentrum für Schwerionenforschung GmbH, Helmholtz-Institut Mainz, 55128 Mainz, Germany.

出版信息

Proc Natl Acad Sci U S A. 2021 Mar 30;118(13). doi: 10.1073/pnas.2025383118.

Abstract

Hyperpolarized fumarate is a promising biosensor for carbon-13 magnetic resonance metabolic imaging. Such molecular imaging applications require nuclear hyperpolarization to attain sufficient signal strength. Dissolution dynamic nuclear polarization is the current state-of-the-art methodology for hyperpolarizing fumarate, but this is expensive and relatively slow. Alternatively, this important biomolecule can be hyperpolarized in a cheap and convenient manner using parahydrogen-induced polarization. However, this process requires a chemical reaction, and the resulting solutions are contaminated with the catalyst, unreacted reagents, and reaction side-product molecules, and are hence unsuitable for use in vivo. In this work we show that the hyperpolarized fumarate can be purified from these contaminants by acid precipitation as a pure solid, and later redissolved to a desired concentration in a clean aqueous solvent. Significant advances in the reaction conditions and reactor equipment allow for formation of hyperpolarized fumarate at C polarization levels of 30-45%.

摘要

高极化延胡索酸盐是一种有前途的用于碳-13 磁共振代谢成像的生物传感器。这种分子成像应用需要核极化以达到足够的信号强度。溶液态动态核极化是目前用于高极化延胡索酸盐的最先进方法,但这种方法昂贵且相对较慢。或者,这种重要的生物分子可以通过氘诱导极化以廉价且方便的方式进行极化。然而,该过程需要化学反应,并且所得溶液被催化剂、未反应的试剂和反应副产物分子污染,因此不适合在体内使用。在这项工作中,我们表明可以通过酸沉淀将这些污染物从高极化延胡索酸盐中分离出来,形成纯净的固体,然后在清洁的水性溶剂中重新溶解到所需的浓度。反应条件和反应器设备的显著改进允许在 C 极化水平为 30-45%的情况下形成高极化延胡索酸盐。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0b9/8020773/8c36e7115a7f/pnas.2025383118fig01.jpg

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