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Updated: Oct 18, 2025

Cefoperazone-treated Mouse Model of Clinically-relevant Clostridium difficile Strain R20291
Published on: December 10, 2016
An Osmotic Laxative Renders Mice Susceptible to Prolonged Clostridioides difficile Colonization and Hinders Clearance
Sarah Tomkovich1, Ana Taylor1, Jacob King1
1Department of Microbiology and Immunology, University of Michigan, Ann Arbor, Michigan, USA.
Abstract:
Antibiotics are a major risk factor for Clostridioides difficile infections (CDIs) because of their impact on the microbiota. However, nonantibiotic medications such as the ubiquitous osmotic laxative polyethylene glycol 3350 (PEG 3350) also alter the microbiota. Clinicians also hypothesize that PEG helps clear C. difficile. But whether PEG impacts CDI susceptibility and clearance is unclear. To examine how PEG impacts susceptibility, we treated C57BL/6 mice with 5-day and 1-day doses of 15% PEG in the drinking water and then challenged the mice with C. difficile 630. We used clindamycin-treated mice as a control because they consistently clear C. difficile within 10 days postchallenge. PEG treatment alone was sufficient to render mice susceptible, and 5-day PEG-treated mice remained colonized for up to 30 days postchallenge. In contrast, 1-day PEG-treated mice were transiently colonized, clearing C. difficile within 7 days postchallenge. To examine how PEG treatment impacts clearance, we administered a 1-day PEG treatment to clindamycin-treated, C. difficile-challenged mice. Administering PEG to mice after C. difficile challenge prolonged colonization up to 30 days postchallenge. When we trained a random forest model with community data from 5 days postchallenge, we were able to predict which mice would exhibit prolonged colonization (area under the receiver operating characteristic curve [AUROC] = 0.90). Examining the dynamics of these bacterial populations during the postchallenge period revealed patterns in the relative abundances of Bacteroides, Enterobacteriaceae, Porphyromonadaceae, Lachnospiraceae, and Akkermansia that were associated with prolonged C. difficile colonization in PEG-treated mice. Thus, the osmotic laxative PEG rendered mice susceptible to C. difficile colonization and hindered clearance. IMPORTANCE Diarrheal samples from patients taking laxatives are typically rejected for Clostridioides difficile testing. However, there are similarities between the bacterial communities from people with diarrhea and those with C. difficile infections (CDIs), including lower diversity than the communities from healthy patients. This observation led us to hypothesize that diarrhea may be an indicator of C. difficile susceptibility. We explored how osmotic laxatives disrupt the microbiota's colonization resistance to C. difficile by administering a laxative to mice either before or after C. difficile challenge. Our findings suggest that osmotic laxatives disrupt colonization resistance to C. difficile and prevent clearance among mice already colonized with C. difficile. Considering that most hospitals recommend not performing C. difficile testing on patients taking laxatives, and laxatives are prescribed prior to administering fecal microbiota transplants via colonoscopy to patients with recurrent CDIs, further studies are needed to evaluate if laxatives impact microbiota colonization resistance in humans.
Insights
The osmotic laxative polyethylene glycol 3350 (PEG 3350) increases susceptibility to Clostridioides difficile infections (CDIs) and hinders pathogen clearance. This challenges clinical assumptions about PEG
Area of Science:
- Microbiology and Infectious Diseases
- Gastroenterology
- Pharmacology
Background:
- Antibiotics are a known risk factor for Clostridioides difficile infections (CDIs) due to their disruption of the gut microbiota.
- Nonantibiotic medications, including polyethylene glycol 3350 (PEG 3350), also impact the microbiota, but their role in CDI is less understood.
- Clinicians hypothesize PEG may aid in C. difficile clearance, yet its effect on CDI susceptibility and resolution remains unclear.
Purpose of the Study:
- To investigate the impact of PEG 3350 on susceptibility to Clostridioides difficile colonization.
- To determine if PEG 3350 affects the clearance of C. difficile in a murine model.
- To identify microbial community patterns associated with prolonged C. difficile colonization under PEG treatment.
Main Methods:
- C57BL/6 mice were administered varying durations of 15% PEG 3350 in drinking water before or after challenge with C. difficile 630.
- Clindamycin-treated mice served as controls for C. difficile clearance.
- Random forest modeling was used to predict prolonged colonization based on gut microbial community data.
Main Results:
- PEG 3350 treatment alone rendered mice susceptible to C. difficile colonization.
- Five-day PEG 3350 treatment led to prolonged colonization (up to 30 days), while one-day treatment resulted in transient colonization.
- Administering PEG 3350 post-challenge significantly prolonged C. difficile colonization, and specific bacterial taxa (e.g., Bacteroides, Enterobacteriaceae) were associated with this outcome.
Conclusions:
- The osmotic laxative PEG 3350 increases susceptibility to C. difficile colonization and impairs its clearance.
- These findings contradict the hypothesis that PEG aids in C. difficile clearance and suggest it may exacerbate infection.
- Further research is warranted to evaluate the impact of laxatives on CDI in humans, especially given current clinical practices regarding C. difficile testing and pre-fecal microbiota transplant protocols.
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