AbstractThe rate constants for the reactions of hydrogen peroxide with ferrous complexes of ATP, ADP, UTP, citrate and pyrophosphate were measured at pH 7.2. These ligands are potential chelators of iron(II) in the low-molecular weight iron pool that may catalyze oxidative degradation of tissues. The second-order rate constants range from 5.5 × 103 M−1s−1 (UTP) to 1 × 105 M−1s−1 (pyrophosphate) at pH 7.2. The kinetic dependences of the ATP reaction are consistent with a mechanism involving a ‘ferryl’ (FeIV) transient which decays to the hydroxyl radical and ferric ATP
The oxidation kinetics of ferrous iron, Fe(II), in natural aquatic systems is of interest due to bot...
The reactivity of few novel high spin Fe(II) complexes of Schiff base ligands derived from 2-hydroxy...
Many metalloporphyrins are catalysts for the oxidation of organic substrates using oxidants such as ...
AbstractThe rate constants for the reactions of hydrogen peroxide with ferrous complexes of ATP, ADP...
AbstractRate constants for the reactions of cumyl hydroperoxide and t-butyl hydroperoxide with ferro...
AbstractRate constants for the reactions of cumyl hydroperoxide and t-butyl hydroperoxide with ferro...
This thesis probes the catalysis of phosphoryl transfer reactions by Fe(II), with particular emphasi...
The reaction between ferrocytochrome c and hydrogen peroxide has been studied to determine possible ...
The oxygenation kinetics of nanomolar concentrations of Fe(II) in aqueous solution have been studied...
Previously, we have studied the coordination and dissociation of hydrogen peroxide with iron(II) in ...
The mechanism and kinetics of superoxide-mediated reduction of a variety of organic iron(III) comple...
In this study, the rates of Fe(II) oxidation by molecular oxygen in the presence of citrate, ethylen...
The mechanism and kinetics of superoxide-mediated reduction of a variety of organic iron(III) comple...
It is well established that several iron complexes can induce oxidative damage in hepatic mitochondr...
It is well established that several iron complexes can induce oxidative damage in hepatic mitochondr...
The oxidation kinetics of ferrous iron, Fe(II), in natural aquatic systems is of interest due to bot...
The reactivity of few novel high spin Fe(II) complexes of Schiff base ligands derived from 2-hydroxy...
Many metalloporphyrins are catalysts for the oxidation of organic substrates using oxidants such as ...
AbstractThe rate constants for the reactions of hydrogen peroxide with ferrous complexes of ATP, ADP...
AbstractRate constants for the reactions of cumyl hydroperoxide and t-butyl hydroperoxide with ferro...
AbstractRate constants for the reactions of cumyl hydroperoxide and t-butyl hydroperoxide with ferro...
This thesis probes the catalysis of phosphoryl transfer reactions by Fe(II), with particular emphasi...
The reaction between ferrocytochrome c and hydrogen peroxide has been studied to determine possible ...
The oxygenation kinetics of nanomolar concentrations of Fe(II) in aqueous solution have been studied...
Previously, we have studied the coordination and dissociation of hydrogen peroxide with iron(II) in ...
The mechanism and kinetics of superoxide-mediated reduction of a variety of organic iron(III) comple...
In this study, the rates of Fe(II) oxidation by molecular oxygen in the presence of citrate, ethylen...
The mechanism and kinetics of superoxide-mediated reduction of a variety of organic iron(III) comple...
It is well established that several iron complexes can induce oxidative damage in hepatic mitochondr...
It is well established that several iron complexes can induce oxidative damage in hepatic mitochondr...
The oxidation kinetics of ferrous iron, Fe(II), in natural aquatic systems is of interest due to bot...
The reactivity of few novel high spin Fe(II) complexes of Schiff base ligands derived from 2-hydroxy...
Many metalloporphyrins are catalysts for the oxidation of organic substrates using oxidants such as ...