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In vivo electron spin resonance: An effective new tool for reactive oxygen species/reactive nitrogen species measurement.

机译:体内电子自旋共振:一种用于测量活性氧/活性氮的有效新工具。

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Reactive oxygen species are regarded as important factors in the initiation and progression of many diseases. Therefore, measurement of redox status would be helpful in understanding the "Redox Navigation" of such diseases. Because electron spin resonance (ESR) shows good signal responses to nitroxyl radical and various redox-related species, such as oxygen radicals and antioxidants, the in vivo ESRitroxyl probe technique can provide useful information on real-time redox status in a living body. ESR spectrometers for in vivo measurements can be operated at lower frequencies (approximately 3.5 GHz, 1 GHz, 700 MHz, and 300 MHz) than usual (9-10 GHz). Several types of resonators were also designed to minimize the dielectric loss of electromagnetic waves caused by water in animal bodies. In vivo ESR spectroscopy and its imaging have been used to analyze radical generation, redox status, partial pressure of oxygen and other conditions in various diseases. In addition, ESR has been used to analyze injury models related to oxidative stresses, such as nitroxyl radicals. The application of in vivo ESR for diseases related to oxidative injuries currently being investigated and the accumulation of basic data for therapy is ongoing. Recent progress in the instrumentation for in vivo ESR spectroscopy and its application to the life sciences are reviewed, because measurement of redox status in vivo is considered necessary to understand the initiation and progression of diseases.
机译:活性氧被认为是许多疾病发生和发展的重要因素。因此,测量氧化还原状态将有助于理解此类疾病的“氧化还原导航”。由于电子自旋共振(ESR)对硝酰自由基和各种与氧化还原有关的物种(如氧自由基和抗氧化剂)显示出良好的信号响应,因此体内ESR /硝酰探针技术可以提供有关活体中实时氧化还原状态的有用信息。用于体内测量的ESR光谱仪可以在比通常的(9-10 GHz)更低的频率(约3.5 GHz,1 GHz,700 MHz和300 MHz)下运行。还设计了几种类型的谐振器,以最大程度地减少动物体内水引起的电磁波的介电损耗。体内ESR光谱及其成像已用于分析各种疾病中自由基的产生,氧化还原状态,氧分压和其他状况。此外,ESR已被用于分析与氧化应激有关的损伤模型,例如硝酰基自由基。目前正在研究体内ESR在与氧化损伤有关的疾病中的应用,并且正在积累治疗的基本数据。综述了体内ESR光谱仪器的最新进展及其在生命科学中的应用,因为认为体内氧化还原状态的测量对于了解疾病的发生和发展是必要的。

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