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Published on: April 6, 2022
Methamphetamine induces long-lasting dysbiosis of the gut microbiota
Nan Ding1,2, Shaowei Zhu3,4, Liya Yue5
1Biomedical Innovation Center, Beijing Shijitan Hospital, Capital Medical University, Beijing, 100038, China.
Abstract:
As a highly addictive and neurotoxic stimulant, methamphetamine poses a severe threat to public psychological well-being and social security. Dysbiosis of gut flora is presumed to be a potential mechanism for methamphetamine habituation. To test this hypothesis, we conducted a cross-species study to analyze the enduring effects of methamphetamine administration on the gut microbiome. Either in an abstinent cohort or sensitized mice, the microbial community remained distinct from controls even after a long-term methamphetamine withdrawal, establishing an emerging homeostasis through extensive interactions of symbionts. The dysbiosis was correlated to the duration of MA abuse. Within the discriminant genera, those in the order Clostridiales exhibited coordinated changes across hosts and functionally reshaped the gut flora, potentially contributing to recurring relapse of drug usage. These findings help comprehend the long-term detriment caused by methamphetamine and underscore the translational implications of leveraging gut microbiome analysis to combat MA-related criminal activities.
Insights
Methamphetamine (MA) abuse causes lasting gut microbiome changes, even after withdrawal. These alterations in gut flora may contribute to drug relapse, highlighting microbiome analysis for combating MA-related crime.
Area of Science:
- Neuroscience
- Microbiology
- Public Health
Background:
- Methamphetamine (MA) is a highly addictive neurotoxin impacting public well-being.
- Gut dysbiosis is a suspected mechanism in methamphetamine habituation.
Purpose of the Study:
- To investigate the long-term effects of methamphetamine on the gut microbiome.
- To explore the relationship between methamphetamine abuse duration and gut microbial changes.
Main Methods:
- A cross-species study analyzing the gut microbiome in mice.
- Comparison of microbial communities in abstinent, sensitized, and control cohorts.
Main Results:
- Methamphetamine administration induced distinct gut microbial communities persisting post-withdrawal.
- Gut dysbiosis correlated with the duration of methamphetamine abuse.
- Clostridiales order genera showed coordinated changes, potentially driving relapse.
Conclusions:
- Methamphetamine abuse causes enduring gut microbiome alterations.
- Gut flora reshaping by specific bacteria may contribute to recurring drug relapse.
- Microbiome analysis offers potential for combating methamphetamine-related criminal activities.
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