Kutala Vijay Kumar, Villamena Frederick A, Ilangovan Govindasamy, Maspoch Daniel, Roques Nans, Veciana Jaume, Rovira Concepció, Kuppusamy Periannan
Center for Biomedical EPR Spectroscopy and Imaging, Davis Heart and Lung Research Institute, The Ohio State University, Columbus, Ohio 43210, USA.
J Phys Chem B. 2008 Jan 10;112(1):158-67. doi: 10.1021/jp076656x. Epub 2007 Dec 15.
The reaction of superoxide radical with a tricarboxylate derivative of perchlorotriphenylmethyl radical (PTM-TC) is studied. PTM-TC is a stable ("inert") free radical, which gives a single sharp electron paramagnetic resonance (EPR) peak in aqueous solutions. PTM-TC also gives a characteristic optical absorption at 380 nm. Superoxide, on reaction with PTM-TC, induced a decrease in the intensity of the EPR signal and optical absorption of PTM-TC at 380 nm. The signal loss was specific to superoxide and linearly dependent on the superoxide flux in the system. Competitive kinetics experiments revealed that PTM-TC reacts with superoxide with an apparent second-order rate constant of 8.3x10(8) M(-1) s(-1). Electrochemical and mass spectrometric analyses of the reaction suggested the formation of perchlorotriphenylmethane and molecular oxygen as products. The high sensitivity of detection of PTM-TC combined with the high rate constant of the reaction of superoxide with PTM-TC may offer a potential opportunity for measurement of superoxide in biological systems. In conclusion, the PTM-TC molecule has high sensitivity and specificity for superoxide radicals and thus may enable quantitative detection of superoxide generation in biological systems using EPR and/or spectrophotometric methods.
研究了超氧自由基与过氯三苯甲基自由基(PTM-TC)的三羧酸衍生物的反应。PTM-TC是一种稳定的(“惰性”)自由基,在水溶液中给出单一尖锐的电子顺磁共振(EPR)峰。PTM-TC在380nm处也有特征性的光吸收。超氧与PTM-TC反应时,会导致PTM-TC的EPR信号强度和380nm处的光吸收降低。信号损失对超氧具有特异性,并且与系统中的超氧通量呈线性相关。竞争动力学实验表明,PTM-TC与超氧反应的表观二级速率常数为8.3×10⁸ M⁻¹ s⁻¹。反应的电化学和质谱分析表明产物为过氯三苯甲烷和分子氧。PTM-TC检测的高灵敏度与超氧与PTM-TC反应的高速率常数相结合,可能为生物系统中超氧的测量提供潜在机会。总之,PTM-TC分子对超氧自由基具有高灵敏度和特异性,因此可以使用EPR和/或分光光度法对生物系统中超氧的产生进行定量检测。