Department of Nuclear Medicine, TUM School of Medicine, Klinikum rechts der Isar of Technical University of Munich, 81675, Munich, Germany.
NVision Imaging Technologies GmbH, 89081, Ulm, Germany.
Adv Sci (Weinh). 2023 Oct;10(30):e2303441. doi: 10.1002/advs.202303441. Epub 2023 Aug 16.
Hyperpolarization techniques increase nuclear spin polarization by more than four orders of magnitude, enabling metabolic MRI. Even though hyperpolarization has shown clear value in clinical studies, the complexity, cost and slowness of current equipment limits its widespread use. Here, a polarization procedure of [1- C]pyruvate based on parahydrogen-induced polarization by side-arm hydrogenation (PHIP-SAH) in an automated polarizer is demonstrated. It is benchmarked in a study with 48 animals against a commercial dissolution dynamic nuclear polarization (d-DNP) device. Purified, concentrated (≈70-160 mM) and highly hyperpolarized (≈18%) solutions of pyruvate are obtained at physiological pH for volumes up to 2 mL within 85 s in an automated process. The safety profile, image quality, as well as the quantitative perfusion and lactate-to-pyruvate ratios, are equivalent for PHIP and d-DNP, rendering PHIP a viable alternative to established hyperpolarization techniques.
极化技术将核自旋极化度提高了四个数量级以上,从而实现了代谢 MRI。尽管极化在临床研究中已经显示出了明显的价值,但当前设备的复杂性、成本和缓慢的速度限制了其广泛应用。在这里,展示了一种基于旁臂氢化的外加磁场氢诱导极化(PHIP-SAH)的 [1- C]丙酮酸极化方法,在一项有 48 只动物参与的研究中,该方法与商业溶解动态核极化(d-DNP)设备进行了基准测试。在自动过程中,在生理 pH 值下,可在 85 秒内获得纯化、浓缩(≈70-160 mM)和高度极化(≈18%)的丙酮酸溶液,体积可达 2 mL。PHIP 的安全性、图像质量以及定量灌注和乳酸/丙酮酸比值与 d-DNP 相当,这使得 PHIP 成为一种可行的替代现有极化技术的方法。