Frears E, Nazhat N, Blake D, Symons M
Inflammation Research Group, St. Bartholomew's Hospital School of Medicine and Dentistry, London, U.K.
Free Radic Res. 1997 Jul;27(1):31-5. doi: 10.3109/10715769709097835.
The most probable initial reaction between .NO and O2 is direct addition to give the peroxyl radical ONOO.. In view of the potential importance of this radical in biology, we have searched extensively for its formation, using EPR spectroscopy and rapid freezing techniques. At best, only extremely low concentrations were detected, and in most systems, no signals were detectable. We conclude that this radical is unlikely to be of major importance per se in biological systems, in contrast with its one electron adduct, the peroxynitrite anion.
.NO与O₂之间最可能的初始反应是直接加成生成过氧自由基ONOO.。鉴于该自由基在生物学中的潜在重要性,我们利用电子顺磁共振光谱和快速冷冻技术广泛探寻其形成情况。充其量只能检测到极低的浓度,而且在大多数体系中都检测不到信号。我们得出结论,与其一电子加合物过氧亚硝酸根阴离子相比,该自由基本身在生物体系中不太可能具有重要意义。