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Endocrine and Digestive Disorders Arising in Childhood in Down Syndrome and Their Cross-Talk
Giuseppe Cannalire1, Roberta Rotondo2,3, Valentina Donini2
1Pediatrics and Neonatology Unit, University of Parma, Guglielmo da Saliceto Hospital, 29121 Piacenza, Italy.
Insights
Down syndrome (DS) involves frequent endocrine and gastrointestinal issues due to trisomy 21. Gut health significantly impacts immune function and metabolic pathways, affecting overall health in individuals with DS.
Area of Science:
- Endocrinology
- Gastroenterology
- Immunology
- Genetics
Background:
- Down syndrome (DS), a genetic disorder from trisomy 21, presents significant endocrine and gastrointestinal challenges.
- These conditions often manifest early, impacting long-term health and quality of life.
Purpose of the Study:
- To review the pathophysiology of endocrine and gastrointestinal disorders in DS.
- To examine the bidirectional interactions within the gut-endocrine-immune axis.
- To highlight the role of gut dysbiosis, inflammation, and epigenetic factors.
Main Methods:
- Narrative review of existing literature.
- Analysis of pathophysiological mechanisms.
- Focus on interactions between gut, endocrine, and immune systems.
Main Results:
- Individuals with DS have higher rates of thyroid dysfunction, type 1 diabetes, growth impairment, and bone metabolism issues.
- Gastrointestinal disorders, including congenital malformations and celiac disease, are highly prevalent.
- Gut dysbiosis, chronic inflammation, and epigenetic factors like microRNA dysregulation contribute to disease development.
Conclusions:
- The gut-endocrine-immune axis plays a critical role in DS-associated pathologies.
- Understanding these complex interactions is vital for improving clinical management.
- Multidisciplinary approaches and early screening are essential for optimizing outcomes in Down syndrome.
Abstract:
Down syndrome (DS), caused by trisomy 21, is associated with a wide spectrum of endocrine and gastrointestinal disorders that often arise early in life and significantly impact long-term health. This narrative review examines the pathophysiological mechanisms underlying these conditions, with a particular focus on their bidirectional interactions. Endocrine abnormalities in DS, including thyroid dysfunction, type 1 diabetes mellitus, growth impairment, and altered bone metabolism, occur at higher rates than in the general population and are largely driven by immune dysregulation, chronic inflammation, and gene dosage effects. Similarly, gastrointestinal disorders-ranging from congenital malformations to autoimmune conditions such as celiac disease-are highly prevalent and often present with atypical clinical features. Emerging evidence highlights the central role of gut dysbiosis, characterized by reduced microbial diversity and increased pro-inflammatory taxa, in modulating immune and metabolic pathways. This altered gut environment contributes to a chronic inflammatory state and may promote autoimmunity and endocrine dysfunction through the gut-endocrine-immune axis. Nutritional deficiencies and epigenetic factors, including microRNA dysregulation, further influence disease expression. Understanding this complex cross-talk is essential for improving clinical management. Integrated, multidisciplinary approaches and early screening strategies are crucial to optimize outcomes and guide future research in DS.
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