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Updated: Jun 23, 2025

Ex Vivo Intestinal Sacs to Assess Mucosal Permeability in Models of Gastrointestinal Disease
Published on: February 9, 2016
Modulation of mercaptopurine intestinal toxicity and pharmacokinetics by gut microbiota
Abstract:
The interaction between the gut microbiota and mercaptopurine (6-MP), a crucial drug used in pediatric acute lymphoblastic leukemia (ALL) treatment, has not been extensively studied. Here we reveal the significant perturbation of gut microbiota after 2-week 6-MP treatment in beagles and mice followed by the functional prediction that showed impairment of SCFAs production and altered amino acid synthesis. And the targeted metabolomics in plasma also showed changes in amino acids. Additionally, targeted metabolomics analysis of feces showed changes in amino acids and SCFAs. Furthermore, ablating the intestinal microbiota by broad-spectrum antibiotics exacerbated the imbalance of amino acids, particularly leading to a significant decrease in the concentration of S-adenosylmethionine (SAM). Importantly, the depletion of gut microbiota worsened the damage of small intestine caused by 6-MP, resulting in increased intestinal permeability. Considering the relationship between toxicity and 6-MP metabolites, we conducted a pharmacokinetic study in pseudo germ-free rats to confirm that gut microbiota depletion altered the methylation metabolites of 6-MP. Specifically, the concentration of MeTINs, a secondary methylation metabolite, showed a negative correlation with SAM, the pivotal methyl donor. Additionally, we observed a strong correlation between Alistipes and SAM levels in both feces and plasma. In conclusion, our study demonstrates that 6-MP disrupts the gut microbiota, and depleting the gut microbiota exacerbates 6-MP-induced intestinal toxicity. Moreover, SAM derived from microbiota plays a crucial role in influencing plasma SAM and the methylation of 6-MP. These findings underscore the importance of comprehending the role of the gut microbiota in 6-MP metabolism and toxicity.
Insights
Mercaptopurine (6-MP) disrupts gut microbiota, worsening intestinal damage and toxicity in leukemia treatment. Gut microbes influence 6-MP metabolism and S-adenosylmethionine (SAM) levels, crucial for drug efficacy and safety.
Area of Science:
- Microbiology
- Pharmacology
- Gastroenterology
Background:
- Mercaptopurine (6-MP) is vital for treating pediatric acute lymphoblastic leukemia (ALL).
- The gut microbiota's role in 6-MP metabolism and toxicity remains poorly understood.
- Understanding this interaction is key to improving ALL treatment outcomes.
Purpose of the Study:
- To investigate the impact of 6-MP on gut microbiota composition and function.
- To determine how gut microbiota alterations affect 6-MP metabolism and toxicity.
- To explore the role of microbial metabolites, particularly S-adenosylmethionine (SAM), in 6-MP's effects.
Main Methods:
- Treatment of beagles and mice with 6-MP.
- Analysis of gut microbiota composition and function (metabolomics).
- Pharmacokinetic studies in pseudo germ-free rats and antibiotic-treated models.
Main Results:
- 6-MP significantly altered gut microbiota, impairing SCFA production and amino acid synthesis.
- Microbiota depletion exacerbated 6-MP-induced intestinal damage and increased permeability.
- Gut microbiota depletion altered 6-MP methylation metabolites and decreased plasma SAM levels, correlating with *Alistipes* abundance.
Conclusions:
- 6-MP disrupts the gut microbiota, which in turn exacerbates drug-induced intestinal toxicity.
- Gut microbiota-derived SAM is critical for regulating plasma SAM and 6-MP methylation.
- Targeting the gut microbiota may offer a strategy to mitigate 6-MP toxicity in ALL patients.
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