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Neurodevelopmental Disorders Associated with Gut Microbiome Dysbiosis in Children
Alejandro Borrego-Ruiz1, Juan J Borrego2,3
1Departamento de Psicología Social y de las Organizaciones, Universidad Nacional de Educación a Distancia (UNED), 28040 Madrid, Spain.
Insights
The human gut microbiome forms early and influences brain development. Disruptions are linked to neurodevelopmental disorders (NDDs), offering potential future treatment targets.
Area of Science:
- Microbiology
- Neuroscience
- Developmental Biology
Background:
- The human gut microbiome develops from in utero and matures in early life.
- Factors like delivery mode, feeding, and stress impact microbiome composition.
- The gut microbiome-brain axis facilitates bidirectional communication via nervous, endocrine, and immune systems.
Purpose of the Study:
- To review evidence on the gut microbiome's impact on early brain development.
- To explore the correlation between the gut microbiome and neurodevelopmental disorders (NDDs).
Main Methods:
- Literature review of recent scientific evidence.
- Analysis of studies linking gut microbiome alterations to NDDs.
Main Results:
- The gut microbiome and its metabolites play a role in regulating early brain development.
- Disturbances in the gut microbiome during development can adversely affect brain function.
- Specific NDDs reviewed include autism spectrum disorder, ADHD, Tourette syndrome, cerebral palsy, and genetic syndromes.
Conclusions:
- Understanding gut microbiome changes in NDDs is crucial.
- This knowledge may open new therapeutic avenues for NDDs.
Abstract:
The formation of the human gut microbiome initiates in utero, and its maturation is established during the first 2-3 years of life. Numerous factors alter the composition of the gut microbiome and its functions, including mode of delivery, early onset of breastfeeding, exposure to antibiotics and chemicals, and maternal stress, among others. The gut microbiome-brain axis refers to the interconnection of biological networks that allow bidirectional communication between the gut microbiome and the brain, involving the nervous, endocrine, and immune systems. Evidence suggests that the gut microbiome and its metabolic byproducts are actively implicated in the regulation of the early brain development. Any disturbance during this stage may adversely affect brain functions, resulting in a variety of neurodevelopmental disorders (NDDs). In the present study, we reviewed recent evidence regarding the impact of the gut microbiome on early brain development, alongside its correlation with significant NDDs, such as autism spectrum disorder, attention-deficit/hyperactivity disorder, Tourette syndrome, cerebral palsy, fetal alcohol spectrum disorders, and genetic NDDs (Rett, Down, Angelman, and Turner syndromes). Understanding changes in the gut microbiome in NDDs may provide new chances for their treatment in the future.
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