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In Vivo Electron Paramagnetic Resonance: Radical Concepts for Translation to the Clinical Setting

机译:体内电子顺磁共振:根治性概念翻译为临床环境。

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摘要

Electron paramagnetic resonance (EPR)-based spectroscopic and imaging techniques allow for the study of free radicals—molecules with one or more unpaired electrons. Biological EPR applications include detection of endogenous biologically relevant free radicals as well as use of specially designed exogenous radicals to probe local microenvironments. This Forum focuses on recent advances in the field of in vivo EPR applications discussed at the International Conference on Electron Paramagnetic Resonance Spectroscopy and Imaging of Biological Systems (EPR-2017). Although direct EPR detection of endogenous free radicals such as reactive oxygen species (ROS) in vivo remains unlikely in most cases, alternative approaches based on applications of advanced spin traps and probes for detection of paramagnetic products of ROS reactions often allow for specific assessment of free radical production in living subjects. In recent decades, significant progress has been achieved in the development and in vivo application of specially designed paramagnetic probes as “molecular spies” to assess and map physiologically relevant functional information such as tissue oxygenation, redox status, pH, and concentrations of interstitial inorganic phosphate and intracellular glutathione. Recent progress in clinical EPR instrumentation and development of biocompatible paramagnetic probes for in vivo multifunctional tissue profiling will eventually make translation of the EPR techniques into clinical settings possible. Antioxid. Redox Signal. 28, 1341–1344.
机译:基于电子顺磁共振(EPR)的光谱和成像技术可用于研究自由基-具有一个或多个未配对电子的分子。 EPR生物的应用包括检测内源性生物学相关自由基,以及使用经过特殊设计的外源性自由基来探测局部微环境。该论坛重点介绍了在电子顺磁共振光谱学和生物系统成像国际会议(EPR-2017)上讨论的体内EPR应用领域的最新进展。尽管在大多数情况下仍不太可能在体内直接进行EPR体内内源自由基的检测,例如活性氧(ROS),但基于先进的自旋阱和探针检测ROS反应顺磁性产物的替代方法通常可以对游离自由基进行特异性评估生命主体的激进生产。近几十年来,在特别设计的顺磁探针作为“分子间谍”的开发和体内应用方面取得了重大进展,以评估和绘制生理相关的功能信息,例如组织氧合,氧化还原状态,pH以及间质性无机磷酸盐的浓度。和细胞内的谷胱甘肽。临床EPR仪器的最新进展以及用于体内多功能组织分析的生物相容顺磁性探针的开发最终将使EPR技术转化为临床环境成为可能。抗氧化。氧化还原信号。 28,1341–1344。

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