Characterized profiles of gut microbiota in morphine abstinence-induced depressive-like behavior
Jinshan Ji1, Ni Yan2, Zhengxiang Zhang3
1Xi'an Jiaotong University Health Science Center, Xi'an 710061, Shaanxi, China; Department of Preventive Medicine, Medical College of Yan'an University, Yan'an 716000, Shanxi, China.
Abstract:
Morphine is the most widely used analgesic for pain management worldwide. Abstinence of morphine could lead to neuropsychiatric symptoms, including depression. Gut microbiota is believed to contribute to the development of depression. However, the characteristics and potential role of gut microbiota in morphine abstinence-induced depression remain unclear. In the present study, we first established morphine abstinence-induced depressive behavior in mice. After dividing the mice into depressive and non-depressive groups, the gut microbiota of the mice was detected by 16S rRNA gene sequencing. The difference in the diversities and abundance of the gut microbiota were analyzed between groups. Then, the representative microbial markers that could distinguish each group were identified. In addition, gene function prediction of the operational taxonomic units (OTUs) with differential abundance between the depressive and non-depressive groups after morphine abstinence was conducted. Our results suggested that four weeks of abstinence from morphine did not change the richness of the gut microbiota. However, morphine abstinence influenced the gut microbial composition. Several specific genera of gut microbiota were identified as markers for each group. Interestingly, gene function prediction found that the fatty acid metabolism pathway was enriched in the OUTs in the depressive group compared with the non-depressive group after morphine abstinence. Our data suggested that gut microbiota dysbiosis was associated with morphine abstinence-induced depressive behavior, possibly by implicating the fatty acid metabolism pathway.
Insights
Morphine abstinence alters gut microbial composition, potentially causing depression. Fatty acid metabolism pathways in gut microbes may play a role in morphine abstinence-induced depression.
Area of Science:
- Neuroscience
- Microbiology
- Pharmacology
Background:
- Morphine is a globally prevalent analgesic.
- Morphine abstinence can trigger neuropsychiatric issues like depression.
- The gut microbiota's role in depression is recognized, but its involvement in morphine abstinence-induced depression is not well understood.
Purpose of the Study:
- To investigate the gut microbiota's characteristics and role in morphine abstinence-induced depression.
- To identify microbial markers associated with depressive behavior after morphine abstinence.
- To explore potential metabolic pathways involved in this condition.
Main Methods:
- Established morphine abstinence-induced depressive behavior in mice.
- Utilized 16S rRNA gene sequencing to analyze gut microbiota composition.
- Performed gene function prediction on differentially abundant microbial operational taxonomic units (OTUs).
Main Results:
- Morphine abstinence did not alter gut microbiota richness but significantly impacted its composition.
- Specific gut microbial genera were identified as markers distinguishing depressive and non-depressive groups.
- The fatty acid metabolism pathway was found to be enriched in the gut microbiota of the depressive group.
Conclusions:
- Gut microbiota dysbiosis is linked to morphine abstinence-induced depressive behavior.
- Alterations in the fatty acid metabolism pathway within the gut microbiota may contribute to this condition.
- Further research into gut microbiota modulation could offer novel therapeutic strategies for managing morphine abstinence.
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