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Published on: June 2, 2022
Akkermansia muciniphila improve cognitive dysfunction by regulating BDNF and serotonin pathway in gut-liver-brain
Eun Ji Kang1, Min-Gi Cha2, Goo-Hyun Kwon2
1Department of Physiology, College of Medicine, Hallym University, Hallymdaehak-Gil 1, Chuncheon-Si, Gangwon-Do, 24252, South Korea.
Backrground:
Akkermansia muciniphila, a next-generation probiotic, is known as a cornerstone regulating the gut-organ axis in various diseases, but the underlying mechanism remains poorly understood. Here, we revealed the neuronal and antifibrotic effects of A. muciniphila on the gut-liver-brain axis in liver injury.
Results:
To investigate neurologic dysfunction and characteristic gut microbiotas, we performed a cirrhosis cohort (154 patients with or without hepatic encephalopathy) and a community cognition cohort (80 participants in one region for three years) and validated the existence of cognitive impairment in a 3,5-diethoxycarbonyl-1,4-dihydrocollidine-induced hepatic injury mouse model. The effects of the candidate strain on cognition were evaluated in animal models of liver injury. The expression of brain-derived neurotrophic factor (BDNF) and serotonin receptors was accessed in patients with fibrosis (100 patients) according to the fibrosis grade and hepatic venous pressure gradient. The proportion of A. muciniphila decreased in populations with hepatic encephalopathy and cognitive dysfunction. Tissue staining techniques confirmed gut-liver-brain damage in liver injury, with drastic expression of BDNF and serotonin in the gut and brain. The administration of A. muciniphila significantly reduced tissue damage and improved cognitive dysfunction and the expression of BDNF and serotonin. Isolated vagus nerve staining showed a recovery of serotonin expression without affecting the dopamine pathway. Conversely, in liver tissue, the inhibition of injury through the suppression of serotonin receptor (5-hydroxytryptamine 2A and 2B) expression was confirmed. The severity of liver injury was correlated with the abundance of serotonin, BDNF, and A. muciniphila.
Conclusions:
A. muciniphila, a next-generation probiotic, is a therapeutic candidate for alleviating the symptoms of liver fibrosis and cognitive impairment.
Insights
Akkermansia muciniphila, a probiotic, improves liver fibrosis and cognitive dysfunction by regulating the gut-liver-brain axis. This next-generation probiotic shows therapeutic potential for liver injury and associated neurological symptoms.
Area of Science:
- Microbiology
- Neuroscience
- Gastroenterology
Background:
- Akkermansia muciniphila is a next-generation probiotic crucial for gut-organ axis regulation.
- Its precise mechanisms in diseases, particularly the gut-liver-brain axis, are not fully understood.
Purpose of the Study:
- To investigate the neuronal and antifibrotic effects of A. muciniphila in liver injury.
- To elucidate the role of A. muciniphila in the gut-liver-brain axis.
Main Methods:
- Analysis of cirrhosis and cognition cohorts.
- Validation in a mouse model of hepatic injury.
- Assessment of brain-derived neurotrophic factor (BDNF) and serotonin receptor expression in patients and animal models.
Main Results:
- Reduced A. muciniphila proportions correlated with hepatic encephalopathy and cognitive dysfunction.
- A. muciniphila administration improved cognitive function and reduced gut-liver-brain tissue damage.
- Serotonin pathway modulation was observed, with A. muciniphila suppressing specific serotonin receptors in liver tissue.
Conclusions:
- A. muciniphila demonstrates significant therapeutic potential for liver fibrosis.
- This probiotic can alleviate cognitive impairment associated with liver injury.
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