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Simultaneous and Spectroscopic Redox Molecular Imaging of Multiple Free Radical Intermediates Using Dynamic Nuclear Polarization-Magnetic Resonance Imaging

机译:使用动态核极化-磁共振成像同时和光谱对多种自由基中间体的氧化还原分子成像

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Redox reactions that generate free radical intermediates are essential to metabolic processes. However, their intermediates can produce reactive oxygen species, which may promote diseases related to oxidative stress. We report here the use of dynamic nuclear polarization-magnetic resonance imaging (DNP-MRI) to conduct redox molecular imaging. Using DNP-MRI, we obtained simultaneous images of free radical intermediates generated from the coenzyme Q_(10) (CoQ_(10)), flavin mononucleotide (FMN), and flavin adenine dinucleotide (FAD) involved in the mitochondrial electron transport chain as well as the radicals derived from vitamins E and K_1. Each of these free radicals was imaged in real time in a phantom comprising a mixture of free radicals localized in either lipophilic or aqueous environments. Changing the frequency of electron spin resonance (ESR) irradiation also allowed each of the radical species to be distinguished in the spectroscopic images. This study is the first to report the spectroscopic DNP-MRI imaging of free radical intermediates that are derived from endogenous species involved in metabolic processes.
机译:产生自由基中间体的氧化还原反应对于代谢过程至关重要。但是,它们的中间体会产生活性氧,可能促进与氧化应激有关的疾病。我们在这里报告使用动态核极化磁共振成像(DNP-MRI)进行氧化还原分子成像。使用DNP-MRI,我们同时获得了由辅酶Q_(10)(CoQ_(10)),黄素单核苷酸(FMN)和黄素腺嘌呤二核苷酸(FAD)参与线粒体电子传输链产生的自由基中间体的图像作为源自维生素E和K_1的自由基。这些自由基中的每一个都是在幻像中实时成像的,该幻像包含位于亲脂性或水性环境中的自由基混合物。改变电子自旋共振(ESR)照射的频率还可以使每个自由基物种在光谱图像中得以区分。这项研究是第一个报告自由基中间体的光谱DNP-MRI成像的方法,这些中间体来自代谢过程中涉及的内源性物种。

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