Increasing evidence indicates that melatonin possesses protective effects toward different kinds of damage in various organs, including the brain. In a neonatal model of hypoxia-ischemia (HI), melatonin was neuroprotective and preserved the expression of the Silent Information Regulator 1 (SIRT1) 24h after the insult. This study aimed to gain more insight into the role of SIRT1 in the protective effect of melatonin after HI by studying the early (1h) modulation of SIRT1 and its downstream targets, and the consequences on necrosis, apoptosis, autophagy and glial cell activation. We found that melatonin administered 5 min after the ischemic insult significantly reduced necrotic cell death assessed 1h after its administration. In parallel, we ...
Melatonin is a promising neuroprotective agent after perinatal hypoxic-ischemic (HI) brain injury. W...
Neurons contain a high number of mitochondria, these neuronal cells produce elevated levels of oxida...
Neurons contain a high number of mitochondria, these neuronal cells produce elevated levels of oxida...
Increasing evidence indicates that melatonin possesses protective effects toward different kinds of ...
Conditions that interfere with the endoplasmic reticulum (ER) functions cause accumulation of unfold...
Stroke is one of the leading causes of death and disability worldwide with limited therapeutic optio...
Melatonin, a natural product of the pineal gland, has been shown to protect against ischemic stroke,...
Objective: Oxidative stress (OS) plays a key role in perinatal brain damage. The aim of this study i...
Compelling evidence has indicated that imbalance between apoptosis and autophagy may be involved in ...
As a potent free radical scavenger and antioxidant, melatonin protects brain tissue against ischemia...
Among the main factors responsible for perinatal brain injury, inflammation, hypoxia-ischemia and fo...
Among the main factors responsible for perinatal brain injury, inflammation, hypoxia-ischemia and fo...
Melatonin is a promising neuroprotective agent after perinatal hypoxic-ischemic (HI) brain injury. W...
Neurons contain a high number of mitochondria, these neuronal cells produce elevated levels of oxida...
Neurons contain a high number of mitochondria, these neuronal cells produce elevated levels of oxida...
Increasing evidence indicates that melatonin possesses protective effects toward different kinds of ...
Conditions that interfere with the endoplasmic reticulum (ER) functions cause accumulation of unfold...
Stroke is one of the leading causes of death and disability worldwide with limited therapeutic optio...
Melatonin, a natural product of the pineal gland, has been shown to protect against ischemic stroke,...
Objective: Oxidative stress (OS) plays a key role in perinatal brain damage. The aim of this study i...
Compelling evidence has indicated that imbalance between apoptosis and autophagy may be involved in ...
As a potent free radical scavenger and antioxidant, melatonin protects brain tissue against ischemia...
Among the main factors responsible for perinatal brain injury, inflammation, hypoxia-ischemia and fo...
Among the main factors responsible for perinatal brain injury, inflammation, hypoxia-ischemia and fo...
Melatonin is a promising neuroprotective agent after perinatal hypoxic-ischemic (HI) brain injury. W...
Neurons contain a high number of mitochondria, these neuronal cells produce elevated levels of oxida...
Neurons contain a high number of mitochondria, these neuronal cells produce elevated levels of oxida...