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Neuroendocrine Effects on the Risk of Metabolic Syndrome in Children
Giovanna Scorrano1, Saverio La Bella1, Sara Matricardi1
1Department of Pediatrics, University of Chieti-Pescara, Via Dei Vestini, 66100 Chieti, Italy.
Insights
Neuroendocrine pathways are crucial for metabolic homeostasis. Disruptions in these systems increase children's risk for metabolic syndrome (MetS) and related conditions.
Area of Science:
- Neuroendocrinology
- Paediatric Metabolism
- Physiology
Background:
- The endocrine and nervous systems interact to maintain homeostasis.
- The hypothalamus is central to neuroendocrine regulation of metabolic processes.
- Neuroendocrine pathway dysfunction is linked to metabolic syndrome (MetS) in children.
Purpose of the Study:
- To review the neuroendocrine effects on MetS risk in children.
- To identify conditions associated with neuroendocrine pathway disruption.
- To explore potential therapeutic targets for paediatric MetS.
Main Methods:
- Literature review focusing on neuroendocrine pathways and MetS in children.
- Analysis of genetic, hormonal, and environmental factors.
- Examination of feedback mechanisms in neuroendocrine regulation.
Main Results:
- Neuroendocrine pathway abnormalities are associated with dyslipidaemia, obesity, insulin resistance, type 2 diabetes, and hypertension.
- Specific neuroendocrine disruptions contribute to the development of MetS in paediatric populations.
- Genetic or epigenetic mutations in key pathways may offer therapeutic targets.
Conclusions:
- Neuroendocrine systems play a significant role in the pathophysiology of paediatric MetS.
- Understanding neuroendocrine disruptions is vital for managing MetS in children.
- Targeting "hot" neuroendocrine pathways could lead to novel therapies for severe paediatric MetS.
Abstract:
The endocrine and nervous systems reciprocally interact to manage physiological individual functions and homeostasis. The nervous system modulates hormone release through the hypothalamus, the main cerebrally specialized structure of the neuroendocrine system. The hypothalamus is involved in various metabolic processes, administering hormone and neuropeptide release at different levels. This complex activity is affected by the neurons of various cerebral areas, environmental factors, peripheral organs, and mediators through feedback mechanisms. Therefore, neuroendocrine pathways play a key role in metabolic homeostasis control, and their abnormalities are associated with the development of metabolic syndrome (MetS) in children. The impaired functioning of the genes, hormones, and neuropeptides of various neuroendocrine pathways involved in several metabolic processes is related to an increased risk of dyslipidaemia, visceral obesity, insulin resistance, type 2 diabetes mellitus, and hypertension. This review examines the neuroendocrine effects on the risk of MetS in children, identifying and underlying several conditions associated with neuroendocrine pathway disruption. Neuroendocrine systems should be considered in the complex pathophysiology of MetS, and, when genetic or epigenetic mutations in "hot" pathways occur, they could be studied for new potential target therapies in severe and drug-resistant paediatric forms of MetS.
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