Department of Radiology, Gifu University, 1-1 Yanagido, Gifu 501-1194, Japan.
Department of Radiology, Frontier Science for Imaging, School of Medicine, Gifu University, Gifu 501-1194, Japan.
Anal Chem. 2020 Nov 3;92(21):14408-14414. doi: 10.1021/acs.analchem.0c02331. Epub 2020 Oct 16.
Reactive oxygen species (ROS) play an important role in cell metabolism, but they can cause oxidative damage to biomolecules. Among ROS, the hydroxyl radical (·OH) is one of the most reactive molecules in biological systems because of its high reaction rate constant. Therefore, imaging of ·OH could be useful for evaluation of the redox mechanism and diagnosis of oxidative diseases. In vivo dynamic nuclear polarization-magnetic resonance imaging (DNP-MRI) is a noninvasive imaging method to obtain spatiotemporal information about free radicals with MRI anatomical resolution. In this study, we investigated the visualization of hydroxyl radicals generated from the Fenton reaction by combining DNP-MRI with a spin-trapping agent (DMPO: 5,5-dimethyl-1-pyrroline -oxide) for ·OH. Additionally, we demonstrated the radical-scavenging effect using four thiol-related reagents by DNP-MRI. We demonstrated that DNP enhancement could be induced by the DMPO-OH radical using the DNP-MRI/spin-trapping method and visualized ·OH generation for the first time. Maximum DNP enhancement was observed at an electron paramagnetic resonance irradiation frequency of 474.5 MHz. Furthermore, the radical-scavenging effect was simultaneously evaluated by the decrease in the DNP image value of DMPO-OH. An advantage of our methods is that they simultaneously investigate compound activity and the radical-scavenging effect.
活性氧(ROS)在细胞代谢中发挥重要作用,但它们也会导致生物分子的氧化损伤。在 ROS 中,羟基自由基(·OH)是生物体系中反应活性最高的分子之一,这是因为其具有较高的反应速率常数。因此,·OH 的成像对于评估氧化还原机制和诊断氧化疾病可能具有重要意义。
动态核极化磁共振成像(DNP-MRI)是一种非侵入性的成像方法,可以利用 MRI 解剖分辨率获得关于自由基的时空信息。在本研究中,我们结合 DNP-MRI 和自旋捕获剂(DMPO:5,5-二甲基-1-吡咯烷-N-氧化物),通过 DNP-MRI 对 Fenton 反应产生的羟基自由基进行可视化研究。此外,我们还通过 DNP-MRI 研究了四种巯基相关试剂的自由基清除作用。
我们通过 DNP-MRI/自旋捕获法证实了 DMPO-OH 自由基可以诱导 DNP 增强,并首次可视化了·OH 的生成。在电子顺磁共振辐照频率为 474.5 MHz 时,观察到最大的 DNP 增强。此外,通过 DMPO-OH 的 DNP 图像值的降低,我们可以同时评估自由基清除作用。
我们的方法的一个优点是可以同时研究化合物的活性和自由基清除作用。