Gut Microbiota-Induced Changes in β-Hydroxybutyrate Metabolism Are Linked to Altered Sociability and Depression in Alcohol Use Disorder
Изменения метаболизма β-гидроксибутирата, индуцированные микробиотой кишечника, связаны с нарушением социального поведения и депрессией при расстройстве, связанном с употреблением алкоголя
2020-10-01
SCID: 54.1/ufhfa7cn
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alcohol use disordergut microbiotagut microbiota transplantationsocial impairmentsβ-hydroxybutyrate metabolism
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Abstract (AI)
Patients with alcohol use disorder (AUD) present with important emotional, cognitive, and social impairments. The gut microbiota has been recently shown to regulate brain functions and behavior but convincing evidence of its role in AUD is lacking. Here, we show that gut dysbiosis is associated with metabolic alterations that affect behavioral (depression, sociability) and neurobiological (myelination, neurotransmission, inflammation) processes involved in alcohol addiction. By transplanting the gut microbiota from AUD patients to mice, we point out that the production of ethanol by specific bacterial genera and the reduction of lipolysis are associated with a lower hepatic synthesis of β-hydroxybutyrate (BHB), which thereby prevents the neuroprotective effect of BHB. We confirm these results in detoxified AUD patients, in which we observe a persisting ethanol production in the feces as well as correlations among low plasma BHB levels and social impairments, depression, or brain white matter alterations.
Key Findings
1
Detoxified patients continued to show fecal ethanol production, indicating persistent microbiota-related metabolic activity after alcohol withdrawal.
2
Gut dysbiosis in alcohol use disorder is associated with metabolic changes affecting depression, sociability, myelination, neurotransmission, and inflammation.
3
Low plasma β-hydroxybutyrate levels correlated with social impairments, depression, and white-matter alterations in detoxified alcohol use disorder patients.
4
Reduced β-hydroxybutyrate production may prevent its neuroprotective effects, contributing to behavioral and neurobiological abnormalities associated with alcohol addiction.
5
Transplanting microbiota from alcohol use disorder patients into mice linked ethanol production by specific bacterial genera and reduced lipolysis to lower hepatic β-hydroxybutyrate synthesis.
Research Object
Gut microbiota in alcohol use disorder, including gut microbiota from AUD patients transplanted into mice
Research Subject
Gut microbiota-induced alterations in β-hydroxybutyrate metabolism and their associations with sociability, depression, and neurobiological processes in alcohol addiction
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2020-10-01
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