Department of Medical Physics, University of Wisconsin-Madison, Madison, WI 53792, USA.
Curr Pharm Biotechnol. 2010 Sep 1;11(6):709-19. doi: 10.2174/138920110792246636.
Hyperpolarized (HP) (13)C labeled compounds can be used as MR contrast agents to investigate metabolic pathways in vivo in almost real time. To date, a high proportion of reported studies have utilized HP 1-(13)C pyruvate to investigate intracellular metabolism in tumors and other tissues. The long T(1) relaxation time of the carboxylate carbon enables the (13)C signal of the pyruvate to be followed for nearly 2 minutes following injection. During this time, pyruvate is rapidly metabolized to generate observable metabolites such as alanine and lactate. HP (13)C labeled compounds have, for example, also been used to non-invasively probe physiological parameters such as pH, which emphasizes the expanding potential of the technique. The commercial availability of dynamic nuclear polarization (DNP) systems to generate hyperpolarized material for injection has made the technique available to researchers worldwide. As a consequence, DNP (13)C MR has become a rapidly expanding area of research. The technique, with its specific strengths and weaknesses, has incredible potential coupled with inherent limitations, and this review aims to both present background to the technique and describe some of the necessary hardware and software essential to perform hyperpolarized (13)C studies. An overview of the current and future role of HP (13)C based molecular imaging is presented.
高极化 [(13)C] 标记化合物可用作磁共振对比剂,几乎可以实时研究体内的代谢途径。迄今为止,报告的研究中有很大一部分利用高极化 1-[(13)C] 丙酮酸来研究肿瘤和其他组织中的细胞内代谢。羧基碳的长 T1 弛豫时间使丙酮酸的 [(13)C] 信号在注射后近 2 分钟内可被跟踪。在此期间,丙酮酸迅速代谢生成可观察到的代谢物,如丙氨酸和乳酸。例如,高极化 [(13)C] 标记化合物还被用于非侵入性地探测生理参数,如 pH 值,这强调了该技术的扩展潜力。动态核极化 (DNP) 系统的商业可用性可用于生成用于注射的高极化材料,使该技术可供世界各地的研究人员使用。因此,DNP [(13)C] MR 已成为一个迅速发展的研究领域。该技术具有独特的优势和劣势,具有巨大的潜力和固有的局限性,本综述旨在介绍该技术的背景,并描述执行高极化 [(13)C] 研究所需的一些必要硬件和软件。概述了基于高极化 [(13)C] 的分子成像的当前和未来作用。