An in vivo model in rat was developed by intraperitoneally administration of Fe-dextran to study oxidative stress triggered by Fe-overload in rat brain. Total Fe levels, as well as the labile iron pool (LIP) concentration, in brain from rats subjected to Fe-overload were markedly increased over control values, 6 h after Fe administration. In this in vivo Fe overload model, the ascorbyl (Aradical dot)/ascorbate (AH−) ratio, taken as oxidative stress index, was assessed. The Aradical dot/AH− ratio in brain was significantly higher in Fe-dextran group, in relation to values in control rats. Brain lipid peroxidation indexes, thiobarbituric acid reactive substances (TBARS) generation rate and lipid radical (LRradical dot) content detected by Ele...
The objective of this study was to investigate the effects of iron dextran on lipid metabolism and t...
Many evidences indicate that oxidative stress plays a significant role in a variety of human disease...
AbstractIron overload was developed in rats by ip injection of iron-dextran. Iron concentration in p...
This work was aimed to test the hypothesis that sub-chronic administration of iron-dextran (Fe-dextr...
Artículo de publicación ISIThis work was aimed to test the hypothesis that sub-chronic administratio...
The hypothesis of this study is that the cerebral cortex, hippocampus, and striatum of the rat brain...
Iron (Fe) overload triggers free radical production and lipid peroxidation processes that may lead t...
Fe is essential for human life because it constitutes the required cofactor for proteins of diverse ...
The hypothesis tested is that Fe administration leads to a response in rat brain modulating the effe...
Background: Excessive iron accumulation leads to iron toxicity in the brain; however the underlying ...
Excessive iron accumulation leads to iron toxicity in the brain; however the underlying mechanism is...
Impaired brain iron homeostatic mechanisms, independent of pathological hallmarks, are harmful to th...
International audienceFor a better understanding of the role of iron imbalance in neuropathology, a ...
Brain damage is associated to oxidative stress in iron (Fe) and copper (Cu) overloads in rats, in a ...
Intracortical injection of iron salts causes seizures. Oxidation of lipids in neural membranes by re...
The objective of this study was to investigate the effects of iron dextran on lipid metabolism and t...
Many evidences indicate that oxidative stress plays a significant role in a variety of human disease...
AbstractIron overload was developed in rats by ip injection of iron-dextran. Iron concentration in p...
This work was aimed to test the hypothesis that sub-chronic administration of iron-dextran (Fe-dextr...
Artículo de publicación ISIThis work was aimed to test the hypothesis that sub-chronic administratio...
The hypothesis of this study is that the cerebral cortex, hippocampus, and striatum of the rat brain...
Iron (Fe) overload triggers free radical production and lipid peroxidation processes that may lead t...
Fe is essential for human life because it constitutes the required cofactor for proteins of diverse ...
The hypothesis tested is that Fe administration leads to a response in rat brain modulating the effe...
Background: Excessive iron accumulation leads to iron toxicity in the brain; however the underlying ...
Excessive iron accumulation leads to iron toxicity in the brain; however the underlying mechanism is...
Impaired brain iron homeostatic mechanisms, independent of pathological hallmarks, are harmful to th...
International audienceFor a better understanding of the role of iron imbalance in neuropathology, a ...
Brain damage is associated to oxidative stress in iron (Fe) and copper (Cu) overloads in rats, in a ...
Intracortical injection of iron salts causes seizures. Oxidation of lipids in neural membranes by re...
The objective of this study was to investigate the effects of iron dextran on lipid metabolism and t...
Many evidences indicate that oxidative stress plays a significant role in a variety of human disease...
AbstractIron overload was developed in rats by ip injection of iron-dextran. Iron concentration in p...