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Current role of melatonin in pediatric neurology: clinical recommendations
Oliviero Bruni1, Daniel Alonso-Alconada2, Frank Besag3
1Department of Developmental and Social Psychology, Sapienza University, Rome, Italy.
Insights
Melatonin effectively treats sleep onset insomnia and delayed sleep phase syndrome in children, especially when given before dim light. It is safe and beneficial for children with developmental disorders and other conditions.
Area of Science:
- Pediatric endocrinology
- Neuroscience
- Sleep medicine
Background:
- Melatonin, an indoleamine from the pineal gland, regulates circadian rhythm.
- It possesses chronobiotic, antioxidant, anti-inflammatory, and free radical scavenging properties.
Purpose of the Study:
- Establish consensus on melatonin's roles in children.
- Develop treatment guidelines for melatonin use in pediatric populations.
Main Methods:
- A 2014 conference in Rome convened experts to discuss melatonin.
- Consensus was sought on efficacy, administration, and safety in children.
Main Results:
- Strongest evidence supports melatonin for sleep onset insomnia and delayed sleep phase syndrome.
- Optimal timing is 3-5 hours before dim light melatonin onset; extended-release offers no advantage.
- Beneficial for sleep disturbances in children with autism spectrum disorder, ADHD, and intellectual disability.
- Melatonin reduces sleep onset latency and increases total sleep time, but not night awakenings.
- Slowed metabolism due to CYP 1A2 activity can be managed by dose reduction.
- Animal and limited human data suggest melatonin may not worsen, and might reduce, seizures.
- Effective for headaches and shows neuroprotective potential in animal models.
- Useful for sleep EEGs and sedation during auditory evoked potential assessments.
- No serious adverse effects identified in humans.
Conclusions:
- Melatonin is a safe and effective treatment for specific pediatric sleep disorders.
- It offers benefits for children with developmental disorders and other conditions.
- Further human studies are needed to confirm neuroprotective effects, particularly for birth asphyxia.
Background/Purpose:
Melatonin, an indoleamine secreted by the pineal gland, plays a key role in regulating circadian rhythm. It has chronobiotic, antioxidant, anti-inflammatory and free radical scavenging properties.
Methods:
A conference in Rome in 2014 aimed to establish consensus on the roles of melatonin in children and on treatment guidelines.
Results And Conclusion:
The best evidence for efficacy is in sleep onset insomnia and delayed sleep phase syndrome. It is most effective when administered 3-5 h before physiological dim light melatonin onset. There is no evidence that extended-release melatonin confers advantage over immediate release. Many children with developmental disorders, such as autism spectrum disorder, attention-deficit/hyperactivity disorder and intellectual disability have sleep disturbance and can benefit from melatonin treatment. Melatonin decreases sleep onset latency and increases total sleep time but does not decrease night awakenings. Decreased CYP 1A2 activity, genetically determined or from concomitant medication, can slow metabolism, with loss of variation in melatonin level and loss of effect. Decreasing the dose can remedy this. Animal work and limited human data suggest that melatonin does not exacerbate seizures and might decrease them. Melatonin has been used successfully in treating headache. Animal work has confirmed a neuroprotective effect of melatonin, suggesting a role in minimising neuronal damage from birth asphyxia; results from human studies are awaited. Melatonin can also be of value in the performance of sleep EEGs and as sedation for brainstem auditory evoked potential assessments. No serious adverse effects of melatonin in humans have been identified.
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