AI Article Synopsis

  • Autism spectrum disorders (ASD) are linked to imbalances in gut microbiota and metabolites, specifically the presence of the microbial metabolite p-Cresol, which is higher in ASD patients.
  • In a study, mice exposed to p-Cresol displayed social behavior deficits and other ASD-like symptoms, indicating a potential connection between p-Cresol and these behaviors through altered central dopamine activity.
  • The research suggests that changes in microbiota composition play a role in the social behavior deficits caused by p-Cresol, and identifies potential for microbiota-targeted therapies for treating ASD.

Article Abstract

Background: Autism spectrum disorders (ASD) are associated with dysregulation of the microbiota-gut-brain axis, changes in microbiota composition as well as in the fecal, serum, and urine levels of microbial metabolites. Yet a causal relationship between dysregulation of the microbiota-gut-brain axis and ASD remains to be demonstrated. Here, we hypothesized that the microbial metabolite p-Cresol, which is more abundant in ASD patients compared to neurotypical individuals, could induce ASD-like behavior in mice.

Results: Mice exposed to p-Cresol for 4 weeks in drinking water presented social behavior deficits, stereotypies, and perseverative behaviors, but no changes in anxiety, locomotion, or cognition. Abnormal social behavior induced by p-Cresol was associated with decreased activity of central dopamine neurons involved in the social reward circuit. Further, p-Cresol induced changes in microbiota composition and social behavior deficits could be transferred from p-Cresol-treated mice to control mice by fecal microbiota transplantation (FMT). We also showed that mice transplanted with the microbiota of p-Cresol-treated mice exhibited increased fecal p-Cresol excretion, compared to mice transplanted with the microbiota of control mice. In addition, we identified possible p-Cresol bacterial producers. Lastly, the microbiota of control mice rescued social interactions, dopamine neurons excitability, and fecal p-Cresol levels when transplanted to p-Cresol-treated mice.

Conclusions: The microbial metabolite p-Cresol induces selectively ASD core behavioral symptoms in mice. Social behavior deficits induced by p-Cresol are dependant on changes in microbiota composition. Our study paves the way for therapeutic interventions targeting the microbiota and p-Cresol production to treat patients with ASD. Video abstract.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8268286PMC
http://dx.doi.org/10.1186/s40168-021-01103-zDOI Listing

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