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Published on: July 30, 2016
From Oxidative Stress to Pain Modulation With Melatonin in Neonatal and Pediatric Care
Serafina Perrone1, Laura Cannavò2, Sofia Gerevini3
1Neonatology Unit, Department of Medicine and Surgery, University of Parma, Pietro Barilla Children's Hospital, Parma, Italy.
Insights
Melatonin offers significant pain relief in children and newborns through multiple pathways beyond its antioxidant effects. This neurohormone is a safe and effective analgesic for pediatric pain management, warranting further research.
Area of Science:
- Pediatric Pain Management
- Neuropharmacology
- Oxidative Stress
Background:
- Pain and oxidative stress are critical challenges in neonatal and pediatric care, potentially impacting neurodevelopment.
- Melatonin, a neurohormone, possesses antioxidant, analgesic, and anti-inflammatory properties.
- Its potential as a therapeutic agent in vulnerable pediatric populations warrants investigation.
Purpose of the Study:
- To critically review preclinical and clinical evidence on the analgesic role of melatonin in neonates and children.
- To integrate mechanistic insights with clinical data for a unified perspective on melatonin's multi-target analgesic effects.
- To emphasize pain-modulating pathways beyond melatonin's antioxidant activity.
Main Methods:
- Conducted a comprehensive literature search of PubMed and MEDLINE for relevant peer-reviewed articles.
- Analyzed preclinical and clinical studies focusing on melatonin's interaction with pain pathways in pediatric populations.
- Examined mechanisms including MT2 receptor activation, neuroinflammation suppression, GABAergic/opioid system modulation, and NMDA receptor signaling.
Main Results:
- Melatonin demonstrates significant antinociceptive effects via central and peripheral mechanisms, synergistic with its antioxidant action.
- Key mechanisms include MT2 receptor activation, NLRP3 inflammasome inhibition, and central neurotransmission regulation.
- Clinical studies show melatonin's efficacy in reducing procedural pain and acting as a sedative in neonates and children, with a favorable safety profile.
Conclusions:
- Melatonin is a safe, pleiotropic, and multi-target analgesic for pediatric care.
- Further translational and clinical research is needed to optimize its use for specific pain conditions.
- Establishing optimal dosing strategies and administration routes in neonatal and pediatric populations is crucial.
Purpose:
Pain and oxidative stress represent critical and frequently underrecognized challenges in neonatal and pediatric care. Their synergistic interaction may adversely affect neurodevelopmental outcomes and long-term quality of life. Melatonin, a neurohormone with well-established antioxidant properties, has also demonstrated analgesic and anti-inflammatory effects, making it an attractive therapeutic candidate in this vulnerable population. This narrative review critically evaluates the available preclinical and clinical evidence on the analgesic role of melatonin in neonates and children. By integrating mechanistic insights with updated clinical data, the review aims to provide a unified perspective on melatonin as a multi-target analgesic, with particular emphasis on pain-modulating pathways that extend beyond its antioxidant activity.
Methods:
Comprehensive literature search was performed using electronic databases, including PubMed and MEDLINE. The review considered peer-reviewed articles published in English that investigated melatonin's interaction with pain-related pathways in neonatal and pediatric populations. Both preclinical and clinical studies were analyzed, with particular focus on mechanisms involving MT2 receptor activation, suppression of neuroinflammation, modulation of GABAergic and opioid systems, and interference with N-methyl-d-aspartate receptor-mediated nociceptive signaling. Clinical evidence was reviewed with attention to analgesic efficacy, sedative properties, and safety in neonates and children. Studies with favorable, neutral, or inconclusive findings were considered if they were relevant to the review scope.
Findings:
Melatonin exerts significant antinociceptive effects through both central and peripheral mechanisms, which are synergistic with its antioxidant action. These effects are mediated by MT2 receptor activation, modulation of inflammatory pathways (including NOD-like receptor protein 3 inflammasome inhibition), and regulation of central neurotransmission. Clinical studies in neonates and children indicate that melatonin is effective in reducing pain during invasive procedures and may serve as a sedative alternative in diagnostic and procedural settings. Across studies, melatonin demonstrated a favorable safety profile, including in preterm infants.
Implications:
Melatonin emerges as a safe, pleiotropic, and multi-target analgesic in pediatric care. Further translational and clinical research is warranted to better define its role in condition-specific pain management, as well as to establish optimal dosing strategies and routes of administration in neonatal and pediatric populations.
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