Mishkovsky Mor, Comment Arnaud
Laboratory for Functional and Metabolic Imaging, Ecole Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
General Electric Healthcare, Chalfont St Giles, Buckinghamshire, HP8 4SP, United Kingdom.
Anal Biochem. 2017 Jul 15;529:270-277. doi: 10.1016/j.ab.2016.09.020. Epub 2016 Sep 22.
The advent of dissolution dynamic nuclear polarization (DNP) led to the emergence of a new kind of magnetic resonance (MR) measurements providing the opportunity to probe metabolism in vivo in real time. It has been shown that, following the injection of hyperpolarized substrates prepared using dissolution DNP, specific metabolic bioprobes that can be used to differentiate between healthy and pathological tissue in preclinical and clinical studies can be readily detected by MR thanks to the tremendous signal enhancement. The present article aims at reviewing the studies of cerebral function and metabolism based on the use of hyperpolarized MR. The constraints and future opportunities that this technology could offer are discussed.
溶解动态核极化(DNP)的出现催生了一种新型磁共振(MR)测量方法,为实时探测体内代谢提供了契机。研究表明,注射用溶解DNP制备的超极化底物后,由于信号大幅增强,磁共振能够轻易检测出可用于临床前和临床研究中区分健康组织与病变组织的特定代谢生物探针。本文旨在综述基于超极化磁共振的脑功能和代谢研究,并探讨该技术可能面临的限制和未来机遇。