The disruption of iron homeostasis is an important factor in the loss of mitochondrial function in neural cells, leading to neurodegeneration. Here, we assessed the protective action of gossypitrin (Gos), a naturally occurring flavonoid, on iron-induced neuronal cell damage using mouse hippocampal HT-22 cells and mitochondria isolated from rat brains. Gos was able to rescue HT22 cells from the damage induced by 100 µM Fe(II)-citrate (EC50 8.6 µM). This protection was linked to the prevention of both iron-induced mitochondrial membrane potential dissipation and ATP depletion. In isolated mitochondria, Gos (50 µM) elicited an almost complete protection against iron-induced mitochondrial swelling, the loss of mitochondrial transmembrane potent...
AbstractIncubation of glutathione (GSH) depleted mouse erythrocytes with the oxidants phenylhydrazin...
Objective: Iron accumulation in the brain leads to the development of Alzheimer�s and Parkinson�...
Background: Excessive iron accumulation leads to iron toxicity in the brain; however the underlying ...
Context: Some flavonoids have been described as neuroprotectors. Gossypitrin (Gos) is a natural occu...
Iron is a crucial trace element and essential for many cellular processes; however, excessive iron a...
Myocardial ischemia/reperfusion (I/R) injury has been associated with ferroptosis, which is characte...
Abstract Iron oxide nanoparticles (IONPs) have been proposed as targeted carriers to deliver therape...
Guttiferone-A (GA) is a natural occurring polyisoprenylated benzophenone with several reported pharm...
Carbon tetrachloride (CCl4) is a known environmental biohazard, which induces lipid peroxidation (LP...
Mangiferin, a naturally occurring glucosylxanthone, has been described as having antidiabetic, antip...
Artículo de publicación ISIAbundant evidence indicates that iron accumulation, oxidative damage and ...
Abstract – Interaction of certain flavonoids with transition metals increases their water solubility...
Ethnopharmacological relevance—The rate of production of reactive oxygen species (ROS) is determined...
AbstractFlavonoids can protect cells from different insults that lead to mitochondria-mediated cell ...
Mitochondria are critical regulators of cell death. a key feature of neurodegeneration Reactive oxyg...
AbstractIncubation of glutathione (GSH) depleted mouse erythrocytes with the oxidants phenylhydrazin...
Objective: Iron accumulation in the brain leads to the development of Alzheimer�s and Parkinson�...
Background: Excessive iron accumulation leads to iron toxicity in the brain; however the underlying ...
Context: Some flavonoids have been described as neuroprotectors. Gossypitrin (Gos) is a natural occu...
Iron is a crucial trace element and essential for many cellular processes; however, excessive iron a...
Myocardial ischemia/reperfusion (I/R) injury has been associated with ferroptosis, which is characte...
Abstract Iron oxide nanoparticles (IONPs) have been proposed as targeted carriers to deliver therape...
Guttiferone-A (GA) is a natural occurring polyisoprenylated benzophenone with several reported pharm...
Carbon tetrachloride (CCl4) is a known environmental biohazard, which induces lipid peroxidation (LP...
Mangiferin, a naturally occurring glucosylxanthone, has been described as having antidiabetic, antip...
Artículo de publicación ISIAbundant evidence indicates that iron accumulation, oxidative damage and ...
Abstract – Interaction of certain flavonoids with transition metals increases their water solubility...
Ethnopharmacological relevance—The rate of production of reactive oxygen species (ROS) is determined...
AbstractFlavonoids can protect cells from different insults that lead to mitochondria-mediated cell ...
Mitochondria are critical regulators of cell death. a key feature of neurodegeneration Reactive oxyg...
AbstractIncubation of glutathione (GSH) depleted mouse erythrocytes with the oxidants phenylhydrazin...
Objective: Iron accumulation in the brain leads to the development of Alzheimer�s and Parkinson�...
Background: Excessive iron accumulation leads to iron toxicity in the brain; however the underlying ...