Reduced glutathione (GSH) is a key component of the cellular defense cascade against injury caused by reactive oxygen species. Because kainic acid (KA) neurotoxicity is probably mediated at least in part by oxidative stress, we examined the influence of KA treatment on GSH content and GSH-related enzyme activities in adult rats. A single injection of KA (10 mg/kg i.p.) time-dependently decreased forebrain GSH (maximal reduction at 48 h). KA also markedly lowered GSH levels in amygdala and hippocampus, but not in the corpus striatum, which is resistant to KA injury. The pineal secretory product melatonin has been shown to exert neuroprotective effects against KA-induced excitotoxicity in rats. Melatonin (2.5 mg/kg i.p., administered four tim...
the antiexcitotoxic efficacy of melatonin, a putative endogenous hydroxyl radical scavenger, was stu...
Recent findings from this laboratory revealed that sleep deprivation reduces total glutathione (GSH)...
Intracellular Pro-oxidant Activity of Melatonin Deprives U937 Cells of Reduced Glutathione without A...
Reduced glutathione (GSH) is a key component of the cellular defense cascade against injury caused b...
The physiological roles of the pineal hormone melatonin are still not completely clarified. Recently...
Endogenous melatonin is a known free radical scavenger that removes reactive oxygen species (ROS), t...
In this study, the protective effect of melatonin against kainate (KA)-induced neurotoxicity was eva...
We recently reported that the pineal hormone melatonin protected neuronal cultures from excitotoxici...
Oxidative stress is a likely molecular mechanism in the neurotoxicity of kainic acid (KA), an excito...
In this study, we injected 10 mg/kg kainate i.p. into rats. This resulted in a brain injury, which w...
PubMed ID: 15370175Oxidative stress is a likely molecular mechanism in the neurotoxicity of kainic a...
PubMed ID: 16010296Kainic acid (KA) initiates neuronal injury and death by inducing oxidative stress...
The pineal hormone melatonin protects neurons in vitro from excitotoxicity mediated by kainate-sensi...
Kainic acid (KA), a potent central excitotoxin, may elicit neuronal death via generation of reactive...
In rats, intraperitoneal administration of the glutamate receptor agonist kainate triggered the expr...
the antiexcitotoxic efficacy of melatonin, a putative endogenous hydroxyl radical scavenger, was stu...
Recent findings from this laboratory revealed that sleep deprivation reduces total glutathione (GSH)...
Intracellular Pro-oxidant Activity of Melatonin Deprives U937 Cells of Reduced Glutathione without A...
Reduced glutathione (GSH) is a key component of the cellular defense cascade against injury caused b...
The physiological roles of the pineal hormone melatonin are still not completely clarified. Recently...
Endogenous melatonin is a known free radical scavenger that removes reactive oxygen species (ROS), t...
In this study, the protective effect of melatonin against kainate (KA)-induced neurotoxicity was eva...
We recently reported that the pineal hormone melatonin protected neuronal cultures from excitotoxici...
Oxidative stress is a likely molecular mechanism in the neurotoxicity of kainic acid (KA), an excito...
In this study, we injected 10 mg/kg kainate i.p. into rats. This resulted in a brain injury, which w...
PubMed ID: 15370175Oxidative stress is a likely molecular mechanism in the neurotoxicity of kainic a...
PubMed ID: 16010296Kainic acid (KA) initiates neuronal injury and death by inducing oxidative stress...
The pineal hormone melatonin protects neurons in vitro from excitotoxicity mediated by kainate-sensi...
Kainic acid (KA), a potent central excitotoxin, may elicit neuronal death via generation of reactive...
In rats, intraperitoneal administration of the glutamate receptor agonist kainate triggered the expr...
the antiexcitotoxic efficacy of melatonin, a putative endogenous hydroxyl radical scavenger, was stu...
Recent findings from this laboratory revealed that sleep deprivation reduces total glutathione (GSH)...
Intracellular Pro-oxidant Activity of Melatonin Deprives U937 Cells of Reduced Glutathione without A...