首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Electron paramagnetic resonance measurements of free radicals in the intact beating heart: a technique for detection and characterization of free radicals in whole biological tissues.
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Electron paramagnetic resonance measurements of free radicals in the intact beating heart: a technique for detection and characterization of free radicals in whole biological tissues.

机译:完整跳动的心脏中自由基的电子顺磁共振测量:检测和表征整个生物组织中自由基的技术。

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摘要

Free radicals have been hypothesized to be important mediators of disease in a variety of organs and tissues. Electron paramagnetic resonance (EPR) spectroscopy can be applied to directly measure free radicals; however, it has not been possible to measure important biological radicals in situ because conventional spectrometer designs are not suitable for the performance of measurements on whole organs or tissues. We report the development of an EPR spectrometer designed for optimum performance in measuring free radicals in intact biological organs or tissues. This spectrometer consists of a 1- to 2-GHz microwave bridge with the source locked to the resonant frequency of a recessed gap loop-gap resonator. With this spectrometer, radical concentrations as low as 0.4 microM can be measured. Isolated beating hearts were studied in which simultaneous real time measurements of free radicals and cardiac contractile function were performed. This in vivo EPR technique was applied to study the kinetics of free radical uptake and metabolism in normally perfused and globally ischemic hearts. In addition, we show that this technique can be used to noninvasively measure tissue oxygen consumption. Thus, it is demonstrated that EPR spectroscopy can be applied to directly measure in vivo free radical metabolism and tissue oxygen consumption. This technique offers great promise in the study of in vivo free radical generation and the effects of this radical generation on whole biological tissues.
机译:自由基被认为是各种器官和组织中疾病的重要介体。电子顺磁共振(EPR)光谱可用于直接测量自由基。然而,由于传统的光谱仪设计不适合在整个器官或组织上进行测量,因此不可能就地测量重要的生物自由基。我们报告了EPR光谱仪的发展,该光谱仪旨在在完整的生物器官或组织中测量自由基的最佳性能。该光谱仪由一个1至2 GHz微波电桥组成,其信号源锁定在一个凹陷的间隙环隙谐振器的谐振频率上。使用该光谱仪,可以测量低至0.4 microM的自由基浓度。研究离体跳动的心脏,其中同时实时测量自由基和心脏收缩功能。这项体内EPR技术用于研究正常灌注和整体缺血性心脏中自由基摄取和代谢的动力学。此外,我们表明该技术可用于无创测量组织耗氧量。因此,证明了EPR光谱可以用于直接测量体内自由基代谢和组织耗氧量。这项技术为体内自由基产生以及自由基产生对整个生物组织的影响提供了广阔的前景。

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