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Updated: Aug 4, 2025

An Intestine/Liver Microphysiological System for Drug Pharmacokinetic and Toxicological Assessment
Published on: December 3, 2020
Bifidobacterium longum R0175 protects mice against APAP-induced liver injury by modulating the Nrf2 pathway
Shengjie Li1, Aoxiang Zhuge1, Jiafeng Xia1
1State Key Laboratory for Diagnosis, National Clinical Research Center for Infectious Diseases, The First Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou, China; Collaborative Innocation Center for Diagnosis and Treatment of Infectious Diseases, Hangzhou, China.
Abstract:
Acetaminophen (APAP) overdose is the most common driver of drug-induced liver injury (DILI) worldwide, and the gut microbiome plays a crucial role in this process. In this study, we estimated the effect of Bifidobacterium longum R0175 on APAP-induced liver injury in mice and discovered that B. longum R0175 alleviated liver injury by diminishing inflammation, reducing oxidative stress levels, inhibiting hepatocyte death and improving APAP-induced microbiome dysbiosis. Further studies revealed that the antioxidative effects of B. longum R0175 were primarily due to activation of the Nrf2 pathway, which was supported by the Nrf2 pathway inhibitor ML385 counteracting these ameliorative effects. B. longum R0175 modified intestinal metabolites, especially the key metabolite sedanolide, which could activate the Nrf2 pathway and contribute to the protective effects against APAP-induced liver injury. Moreover, we found that sedanolide exhibited close interrelationships with specific microbial taxa, indicating that this factor may be derived from gut microbes. In conclusion, our work demonstrated that B. longum R0175 could reduce oxidative damage, inflammation and hepatocyte death by activating the Nrf2 pathway. Importantly, we identified the microbiota-derived metabolite sedanolide, which was first discovered in the mouse intestine, as a key agonist of the Nrf2 pathway and primary effector of B. longum R0175 in APAP challenge. These findings provide new perspectives for APAP overdose therapy and demonstrate the enormous potential of B. longum R0175 in alleviating acute liver injury.
Insights
Bifidobacterium longum R0175 protects against acetaminophen (APAP)-induced liver injury by activating the Nrf2 pathway. This probiotic reduces inflammation, oxidative stress, and liver cell death, with sedanolide identified as a key metabolite.
Area of Science:
- Hepatology
- Microbiology
- Pharmacology
Background:
- Acetaminophen (APAP) overdose is a leading cause of drug-induced liver injury (DILI).
- The gut microbiome significantly influences APAP-induced liver injury.
- Understanding microbial interventions is crucial for DILI management.
Purpose of the Study:
- To investigate the protective effects of Bifidobacterium longum R0175 against APAP-induced liver injury in mice.
- To elucidate the underlying mechanisms, including the role of the Nrf2 pathway and microbial metabolites.
Main Methods:
- Administration of B. longum R0175 to mice challenged with APAP.
- Assessment of liver injury markers, inflammation, oxidative stress, and hepatocyte death.
- Analysis of gut microbiome composition and intestinal metabolites, including the identification of sedanolide.
- Utilizing the Nrf2 pathway inhibitor ML385 to confirm pathway involvement.
Main Results:
- B. longum R0175 significantly alleviated APAP-induced liver injury.
- The probiotic reduced inflammation, oxidative stress, and hepatocyte death.
- B. longum R0175 activated the Nrf2 pathway, a mechanism confirmed by ML385.
- Sedanolide, a microbiota-derived metabolite, was identified as a key Nrf2 activator and mediator of B. longum R0175's protective effects.
Conclusions:
- B. longum R0175 demonstrates significant therapeutic potential for acetaminophen-induced liver injury.
- Activation of the Nrf2 pathway by the microbiota-derived metabolite sedanolide is a key mechanism of protection.
- Targeting the gut microbiome offers a promising strategy for managing DILI.
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