Nedeianu Saviana, Páli Tibor
Institute of Biophysics, Biological Research Centre Szeged, P.O. Box 521, 6701 Szeged, Hungary.
Cell Mol Biol Lett. 2002;7(1):142-3.
Two commonly used hydrophobic and hydrophilic spin traps for NO, namely Fe2+(DETC)(2)and Fe2+(MGD)(2), respectively, were analyzed via EPR spectroscopy. EPR spectra of trapped NO, together with field position standards, were recorded both in the frozen state and at room temperature. We present a detailed characterization of the EPR spectra of the above paramagnetic NO complexes, concerning g-value, hyperfine splitting and linewidths. This study also provides spectroscopic data required to develop a quantitative and sensitive detection system for nitric oxide both in hydrophobic and hydrophilic aqueous media.
通过电子顺磁共振光谱(EPR)分析了两种常用于捕获NO的疏水性和亲水性自旋捕集剂,即分别为Fe2+(DETC)2和Fe2+(MGD)2。在冷冻状态和室温下均记录了捕获的NO的EPR光谱以及场位置标准。我们对上述顺磁性NO配合物的EPR光谱进行了详细表征,涉及g值、超精细分裂和线宽。本研究还提供了在疏水性和亲水性水性介质中开发用于一氧化氮的定量和灵敏检测系统所需的光谱数据。