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Zonulin-Dependent Intestinal Permeability in Children Diagnosed with Mental Disorders: A Systematic Review and
Birna Asbjornsdottir1,2,3, Heiddis Snorradottir1, Edda Andresdottir1
1Unit for Nutrition Research, Faculty of Food and Nutritional Sciences, University of Iceland, 101 Reykjavik, Iceland.
Insights
Children with mental disorders like ADHD and ASD show altered intestinal permeability (IP). Elevated serum zonulin in ADHD and potential barrier dysfunction in ASD suggest a link between gut health and neurodevelopmental conditions.
Area of Science:
- Neuroscience
- Gastroenterology
- Pediatrics
Background:
- Mental disorders affect up to 20% of children and adolescents globally, representing a major cause of disability.
- Increased intestinal permeability (IP) is linked to neural, hormonal, and immunological pathways, potentially influencing mental health.
- Serum zonulin levels are a recognized marker for assessing IP.
Purpose of the Study:
- To systematically review and meta-analyze observational studies investigating IP in children diagnosed with mental disorders.
- To explore the association between IP markers and specific conditions like ADHD, ASD, and OCD in pediatric populations.
Main Methods:
- Systematic literature search across Cochrane Library, PsycINFO, PubMed, and Web of Science.
- Inclusion of non-intervention studies in children (<18 years) with diagnosed mental disorders and IP markers.
- Risk of bias assessment using the Newcastle-Ottawa Scale (NOS); meta-analysis of serum zonulin levels.
Main Results:
- Five observational studies (402 participants) were included, focusing on ADHD, ASD, and OCD.
- Elevated serum zonulin in ADHD correlated with impaired social functioning; ASD may involve intestinal barrier dysfunction.
- Meta-analysis revealed significantly higher mean serum zonulin levels in patients versus controls (p=0.001).
Conclusions:
- Evidence suggests a connection between intestinal permeability and mental disorders in children, particularly ADHD and ASD.
- While zonulin levels were not significantly different in OCD, claudin-5 levels were higher, indicating altered barrier function.
- Further research is needed to elucidate the role of intestinal and blood-brain barrier function in pediatric mental and neurodevelopmental disorders.
Abstract:
Worldwide, up to 20% of children and adolescents experience mental disorders, which are the leading cause of disability in young people. Research shows that serum zonulin levels are associated with increased intestinal permeability (IP), affecting neural, hormonal, and immunological pathways. This systematic review and meta-analysis aimed to summarize evidence from observational studies on IP in children diagnosed with mental disorders. The review follows the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines. A systematic search of the Cochrane Library, PsycINFO, PubMed, and the Web of Science identified 833 records. Only non-intervention (i.e., observational) studies in children (<18 years) diagnosed with mental disorders, including a relevant marker of intestinal permeability, were included. Five studies were selected, with the risk of bias assessed according to the Newcastle-Ottawa scale (NOS). Four articles were identified as strong and one as moderate, representing altogether 402 participants providing evidence on IP in children diagnosed with attention deficit and hyperactivity disorder (ADHD), autism spectrum disorder (ASD), and obsessive-compulsive disorder (OCD). In ADHD, elevated serum zonulin levels were associated with impaired social functioning compared to controls. Children with ASD may be predisposed to impair intestinal barrier function, which may contribute to their symptoms and clinical outcome compared to controls. Children with ASD, who experience gastro-intestinal (GI) symptoms, seem to have an imbalance in their immune response. However, in children with OCD, serum zonulin levels were not significantly different compared to controls, but serum claudin-5, a transmembrane tight-junction protein, was significantly higher. A meta-analysis of mean zonulin plasma levels of patients and control groups revealed a significant difference between groups (p = 0.001), including the four studies evaluating the full spectrum of the zonulin peptide family. Therefore, further studies are required to better understand the complex role of barrier function, i.e., intestinal and blood-brain barrier, and of inflammation, to the pathophysiology in mental and neurodevelopmental disorders. This review was PROSPERO preregistered, (162208).
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