Title of article :
Reaction of superoxide with trityl radical: implications for the determination of superoxide by spectrophotometry
Author/Authors :
Kutala، نويسنده , , Vijay Kumar and Parinandi، نويسنده , , Narasimham L and Zweier، نويسنده , , Jay L and Kuppusamy، نويسنده , , Periannan، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
8
From page :
81
To page :
88
Abstract :
Superoxide radicals can be measured by redox methods which utilize the oxidation/reduction reactions of specific compounds. The redox methods, however, suffer from various interferences, which limit their use in the assay of superoxide. Electron paramagnetic resonance (EPR) spectroscopy using spin traps has been widely used as an alternative and direct technique to measure superoxide radicals. In our recent study, we have demonstrated the detection of superoxide in cellular system by EPR spectroscopy with triarylmethyl (trityl) free radical, TAM Ox063. TAM is highly water-soluble and stable in the presence of many biological oxidizing and reducing agents such as hydrogen peroxide, ascorbate, and glutathione. TAM reacts with superoxide with an apparent second order rate constant of 3.1 × 103 M−1 s−1. In the present work, we investigated the feasibility of a spectrophotometric assay of superoxide by taking advantage of the newly formed distinct absorption peak corresponding to the product formed from the reaction between TAM and superoxide. The effects of different fluxes of superoxide and concentrations of TAM on the efficiency and sensitivity of quantification of superoxide were investigated and compared with the widely used cytochrome c method of superoxide determination. The results demonstrated that the TAM method is comparable to the cytochrome c method for the assay of superoxide and further revealed that the assay is not affected by the presence of hydrogen peroxide. In summary, the TAM spectrophotometric assay of superoxide provides a suitable alternative method to the cytochrome c assay to measure superoxide and further complements our earlier reported TAM-EPR assay of superoxide.
Keywords :
Spectrophotometry , Superoxide , Xanthine oxidase , cytochrome c , Trityl radical
Journal title :
Archives of Biochemistry and Biophysics
Serial Year :
2004
Journal title :
Archives of Biochemistry and Biophysics
Record number :
1625929
Link To Document :
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