Literature DB >> 32312186

Altered gut microbial profile is associated with abnormal metabolism activity of Autism Spectrum Disorder.

Zhou Dan1,2,3,4, Xuhua Mao5, Qisha Liu1,2,3, Mengchen Guo1,2,3, Yaoyao Zhuang1,2,3, Zhi Liu1,2,3, Kun Chen1,2,3, Junyu Chen1,2,3, Rui Xu1,2,3, Junming Tang5, Lianhong Qin6, Bing Gu7, Kangjian Liu4, Chuan Su1, Faming Zhang4, Yankai Xia8, Zhibin Hu8, Xingyin Liu1,2,3,4.   

Abstract

Autism Spectrum Disorder (ASD) is a severe neurodevelopmental disorder. To enhance the understanding of the gut microbiota structure in ASD children at different ages as well as the relationship between gut microbiota and fecal metabolites, we first used the 16S rRNA sequencing to evaluate the gut microbial population in a cohort of 143 children aged 2-13 years old. We found that the α-diversity of ASD group showed no significant change with age, while the TD group showed increased α-diversity with age, which indicates that the compositional development of the gut microbiota in ASD varies at different ages in ways that are not consistent with TD group. Recent studies have shown that chronic constipation is one of the most commonly obvious gastrointestinal (GI) symptoms along with ASD core symptoms. To further investigate the potential interaction effects between ASD and GI symptoms, the 30 C-ASD and their aged-matched TD were picked out to perform metagenomics analysis. We observed that C-ASD group displayed decreased diversity, depletion of species of Sutterella, Prevotella, and Bacteroides as well as dysregulation of associated metabolism activities, which may involve in the pathogenesis of C-ASD. Consistent with metagenomic analysis, liquid chromatography-mass spectrometry (LC/MS) revealed some of the differential metabolites between C-ASD and TD group were involved in the metabolic network of neurotransmitters including serotonin, dopamine, histidine, and GABA. Furthermore, we found these differences in metabolites were associated with altered abundance of specific bacteria. The study suggested possible future modalities for ASD intervention through targeting the specific bacteria associated with neurotransmitter metabolism.

Entities:  

Keywords:  16s rRNA; ASD; gut microbiota; metabolism; metagenomics; neurotransmitter

Year:  2020        PMID: 32312186      PMCID: PMC7524265          DOI: 10.1080/19490976.2020.1747329

Source DB:  PubMed          Journal:  Gut Microbes        ISSN: 1949-0976


  80 in total

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Journal:  Nat Commun       Date:  2015-03-11       Impact factor: 14.919

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7.  Leveraging blood serotonin as an endophenotype to identify de novo and rare variants involved in autism.

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10.  Alterations in Gut Glutamate Metabolism Associated with Changes in Gut Microbiota Composition in Children with Autism Spectrum Disorder.

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5.  NMR-Based Metabolomics of Rat Hippocampus, Serum, and Urine in Two Models of Autism.

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6.  Beneficial Effects of Repeated Washed Microbiota Transplantation in Children With Autism.

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Authors:  Malak M Aljumaiah; Mona A Alonazi; Abeer M Al-Dbass; Ahmad T Almnaizel; Mohammed Alahmed; Dina A Soliman; Afaf El-Ansary
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Review 10.  Role of microbes in the pathogenesis of neuropsychiatric disorders.

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