AbstractThe incubation of a ghost-free erythrocyte lysate with the oxidizing agent phenylhydrazine resulted in both methemoglobin formation and release of iron in a desferrioxamine (DFO)-chelatable form. The released iron was diffusible, as shown by a dialysis carried out simultaneously with the incubation. When the dialysate was added to erythrocyte ghosts or to microsomes from liver or brain, lipid peroxidation developed in the membranes, indicating that the diffusible iron was in a redox active form. The addition of ATP to the lysate markedly increased both iron diffusion and lipid peroxidation in the membranes subsequently added to the dialysate. The possible implication of these data in some well known pathologies is discussed
AbstractThe iron chelator desferrioxamine has been applied in many studies of pathological states by...
It has been known for many decades that oxidative stress leads to oxidation of hemoglobin and damage...
I N ORI)ER to explore the utilization of iron in erythropoiesis we shall examine the trans-port of i...
The incubation of a ghost-free erythrocyte lysate with the oxidizing agent phenylhydrazine resulted ...
Iron is released in a free [desferrioxamine (DFO)-chelatable] form in mouse erythrocytes incubated w...
Mouse erythrocytes were incubated with oxidizing agents, phenylhydrazine, divicine and isouramil. Wi...
It is generally accepted that iron when released from the macromolecular complexes (ferritin, transf...
Iron, to be redox cycling active, has to be released from its macromolecular complexes (ferritin, tr...
Iron is released in a free desferrioxamine-chelatable form when erythrocytes are challenged by an ox...
Our previous studies have shown that iron is released in a free (desferrioxamine-chelatable) form wh...
Iron is the most abundant transition metal in the earths crust. It cycles easily between ferric (oxi...
Sickle erythrocyte (RBC) membranes were previously shown t o manifest increased Fenton activity (iro...
Allyl alcohol administration in a toxic dose (1.5 mmol/kg) to starved mice causes the development of...
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...
AbstractThe iron chelator desferrioxamine has been applied in many studies of pathological states by...
It has been known for many decades that oxidative stress leads to oxidation of hemoglobin and damage...
I N ORI)ER to explore the utilization of iron in erythropoiesis we shall examine the trans-port of i...
The incubation of a ghost-free erythrocyte lysate with the oxidizing agent phenylhydrazine resulted ...
Iron is released in a free [desferrioxamine (DFO)-chelatable] form in mouse erythrocytes incubated w...
Mouse erythrocytes were incubated with oxidizing agents, phenylhydrazine, divicine and isouramil. Wi...
It is generally accepted that iron when released from the macromolecular complexes (ferritin, transf...
Iron, to be redox cycling active, has to be released from its macromolecular complexes (ferritin, tr...
Iron is released in a free desferrioxamine-chelatable form when erythrocytes are challenged by an ox...
Our previous studies have shown that iron is released in a free (desferrioxamine-chelatable) form wh...
Iron is the most abundant transition metal in the earths crust. It cycles easily between ferric (oxi...
Sickle erythrocyte (RBC) membranes were previously shown t o manifest increased Fenton activity (iro...
Allyl alcohol administration in a toxic dose (1.5 mmol/kg) to starved mice causes the development of...
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...
AbstractThe iron chelator desferrioxamine has been applied in many studies of pathological states by...
It has been known for many decades that oxidative stress leads to oxidation of hemoglobin and damage...
I N ORI)ER to explore the utilization of iron in erythropoiesis we shall examine the trans-port of i...