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Updated: Dec 5, 2025

Quantitative Polymerase Chain Reaction-based Analyses of Murine Intestinal Microbiota After Oral Antibiotic Treatment
Published on: November 17, 2018
Gut microbiota characteristics in mice with antibiotic-associated diarrhea
Haoqing Shao1,2, Chenyang Zhang1,2, Nenqun Xiao3
1School of Traditional Chinese Medicine, Hunan University of Chinese Medicine, Changsha, Hunan, China.
Background:
Antibiotic-associated diarrhea (AAD), defined as diarrhea that occurs in association with the administration of antibiotics and without another clear etiology, is one of the most common adverse drug events of antibiotics therapy. We established a diarrhea model induced by gentamycin and cefradine to investigate the microbiota characteristics in the intestinal lumen of mice with AAD and provide insights into noteworthy bacteria related to gentamicin and cefradine-associated diarrhea.
Results:
The number of OTUs in the model group and the normal group was 983 and 2107, respectively, and 872 identical OTUs were shared between two groups. Species richness and species diversity of intestinal microbe were altered by antibiotics administration. PCoA showed a clear separation between AAD and health control. The dominant phyla of AAD mice were Firmicutes (52.63%) and Proteobacteria (46.37%). Among the genus with top 20 abundance, the relative abundance of 7 genera, Ruminococcus, Blautia, Enterococcus, Eubacterium, Clostridium, Coprococcus, and Aerococcus, were enriched in the model group. Based upon the LEfSe analysis, Enterococcus, Eubacterium, Ruminococcus, and Blautia were identified as potential biomarkers for AAD.
Conclusions:
The bacterial diversity of the intestinal lumen was diminished after gentamicin and cefradine administration. The alterations in the abundance and composition of gut microbiota further led to the dysfunction of gut microbiota. More specifically, gentamicin and cefradine significantly increased the abundance of the opportunistic pathogens, of which Enterococcus and Clostridium were the most prominent and most worthy of attention.
Insights
Antibiotic-associated diarrhea (AAD) significantly reduces gut microbial diversity. Gentamicin and cefradine treatments enriched opportunistic pathogens like Enterococcus and Clostridium, highlighting key bacteria involved in AAD.
Area of Science:
- Microbiology
- Gastroenterology
- Pharmacology
Background:
- Antibiotic-associated diarrhea (AAD) is a common adverse drug event.
- Understanding the gut microbiota's role in AAD is crucial for effective treatment.
Purpose of the Study:
- To investigate the microbiota characteristics in a mouse model of AAD.
- To identify specific bacteria associated with gentamicin and cefradine-induced diarrhea.
Main Methods:
- Establishment of a gentamicin and cefradine-induced diarrhea model in mice.
- Analysis of intestinal lumen microbiota composition and diversity using 16S rRNA sequencing.
- Identification of differentially abundant bacterial taxa and potential biomarkers using LEfSe analysis.
Main Results:
- Antibiotic administration significantly reduced microbial richness and diversity (OTUs: 983 vs. 2107).
- Principal Coordinate Analysis (PCoA) revealed clear separation between AAD and control groups.
- Dominant phyla in AAD mice were Firmicutes (52.63%) and Proteobacteria (46.37%).
- Genera Ruminococcus, Blautia, Enterococcus, Eubacterium, Clostridium, Coprococcus, and Aerococcus were enriched in the AAD model.
- Enterococcus, Eubacterium, Ruminococcus, and Blautia were identified as potential AAD biomarkers.
Conclusions:
- Gentamicin and cefradine diminish intestinal bacterial diversity.
- Alterations in gut microbiota composition lead to gut dysfunction.
- Opportunistic pathogens, particularly Enterococcus and Clostridium, are significantly increased in AAD.
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