In this study, the protective effect of melatonin against kainate (KA)-induced neurotoxicity was evaluated in vitro and in vivo. In rat brain synaptosomes, KA-induced oxidative stress was measured as shown by significant increases in both the basal generation of reactive oxygen species (ROS), assessed by a fluorescent method, and lipid peroxidation, evaluated as malondialdehyde (MDA) levels. Melatonin decreased, in a concentration-dependent manner, KA-induced lipid peroxidation. The intrinsic fluorescence of melatonin molecule hindered the evaluation of its protective effect against KA-induced ROS generation. However, melatonin was able to reduce FeSO4/ascorbate-induced ROS generation. The melatonin protective effect was confirmed by in viv...
The brain consumes large quantities of oxygen relative to its' contribution to total body mass, This...
In this study, the protective effects of melatonin were evaluated against 3-nitropropionic acid (3-N...
Dept. of Medical Science/석사[한글] [영문]The brain is organ with an high oxygen consumption where a lot ...
In this study, we injected 10 mg/kg kainate i.p. into rats. This resulted in a brain injury, which w...
Endogenous melatonin is a known free radical scavenger that removes reactive oxygen species (ROS), t...
We recently reported that the pineal hormone melatonin protected neuronal cultures from excitotoxici...
In rats, intraperitoneal administration of the glutamate receptor agonist kainate triggered the expr...
PubMed ID: 16010296Kainic acid (KA) initiates neuronal injury and death by inducing oxidative stress...
Oxidative stress is a likely molecular mechanism in the neurotoxicity of kainic acid (KA), an excito...
The physiological roles of the pineal hormone melatonin are still not completely clarified. Recently...
PubMed ID: 15370175Oxidative stress is a likely molecular mechanism in the neurotoxicity of kainic a...
The pineal hormone melatonin protects neurons in vitro from excitotoxicity mediated by kainate-sensi...
the antiexcitotoxic efficacy of melatonin, a putative endogenous hydroxyl radical scavenger, was stu...
Reduced glutathione (GSH) is a key component of the cellular defense cascade against injury caused b...
The full range of physiological actions of melatonin is not completely known. In mammals, it modulat...
The brain consumes large quantities of oxygen relative to its' contribution to total body mass, This...
In this study, the protective effects of melatonin were evaluated against 3-nitropropionic acid (3-N...
Dept. of Medical Science/석사[한글] [영문]The brain is organ with an high oxygen consumption where a lot ...
In this study, we injected 10 mg/kg kainate i.p. into rats. This resulted in a brain injury, which w...
Endogenous melatonin is a known free radical scavenger that removes reactive oxygen species (ROS), t...
We recently reported that the pineal hormone melatonin protected neuronal cultures from excitotoxici...
In rats, intraperitoneal administration of the glutamate receptor agonist kainate triggered the expr...
PubMed ID: 16010296Kainic acid (KA) initiates neuronal injury and death by inducing oxidative stress...
Oxidative stress is a likely molecular mechanism in the neurotoxicity of kainic acid (KA), an excito...
The physiological roles of the pineal hormone melatonin are still not completely clarified. Recently...
PubMed ID: 15370175Oxidative stress is a likely molecular mechanism in the neurotoxicity of kainic a...
The pineal hormone melatonin protects neurons in vitro from excitotoxicity mediated by kainate-sensi...
the antiexcitotoxic efficacy of melatonin, a putative endogenous hydroxyl radical scavenger, was stu...
Reduced glutathione (GSH) is a key component of the cellular defense cascade against injury caused b...
The full range of physiological actions of melatonin is not completely known. In mammals, it modulat...
The brain consumes large quantities of oxygen relative to its' contribution to total body mass, This...
In this study, the protective effects of melatonin were evaluated against 3-nitropropionic acid (3-N...
Dept. of Medical Science/석사[한글] [영문]The brain is organ with an high oxygen consumption where a lot ...