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Updated: Oct 27, 2025

Cefoperazone-treated Mouse Model of Clinically-relevant Clostridium difficile Strain R20291
Published on: December 10, 2016
Mechanisms of antibiotic resistance of Clostridioides difficile
Ishani Wickramage1, Patrizia Spigaglia2, Xingmin Sun1
1Department of Molecular Medicine, Morsani College of Medicine, University of South Florida, 12901 Bruce B. Down Blvd, Tampa, FL 33612, USA.
Abstract:
Clostridioides difficile (CD) is one of the top five urgent antibiotic resistance threats in USA. There is a worldwide increase in MDR of CD, with emergence of novel strains which are often more virulent and MDR. Antibiotic resistance in CD is constantly evolving with acquisition of novel resistance mechanisms, which can be transferred between different species of bacteria and among different CD strains present in the clinical setting, community, and environment. Therefore, understanding the antibiotic resistance mechanisms of CD is important to guide optimal antibiotic stewardship policies and to identify novel therapeutic targets to combat CD as well as other bacteria. Epidemiology of CD is driven by the evolution of antibiotic resistance. Prevalence of different CD strains and their characteristic resistomes show distinct global geographical patterns. Understanding epidemiologically driven and strain-specific characteristics of antibiotic resistance is important for effective epidemiological surveillance of antibiotic resistance and to curb the inter-strain and -species spread of the CD resistome. CD has developed resistance to antibiotics with diverse mechanisms such as drug alteration, modification of the antibiotic target site and extrusion of drugs via efflux pumps. In this review, we summarized the most recent advancements in the understanding of mechanisms of antibiotic resistance in CD and analysed the antibiotic resistance factors present in genomes of a few representative well known, epidemic and MDR CD strains found predominantly in different regions of the world.
Insights
Clostridioides difficile (CD) is a major antibiotic resistance threat. Understanding its evolving resistance mechanisms is crucial for developing new treatments and effective antibiotic stewardship.
Area of Science:
- Microbiology
- Infectious Diseases
- Genomics
Background:
- Clostridioides difficile (CD) is a significant antibiotic resistance threat globally.
- Emerging CD strains exhibit increased virulence and multidrug resistance (MDR).
- Antibiotic resistance in CD evolves through novel mechanisms transferable between bacteria.
Purpose of the Study:
- To review recent advancements in understanding CD antibiotic resistance mechanisms.
- To analyze antibiotic resistance factors in epidemic and MDR CD strains worldwide.
- To inform antibiotic stewardship and identify new therapeutic targets.
Main Methods:
- Literature review of recent advancements in CD antibiotic resistance.
- Genomic analysis of representative epidemic and MDR CD strains.
- Comparative analysis of resistance mechanisms across different CD strains and geographical regions.
Main Results:
- CD employs diverse resistance mechanisms including drug alteration, target modification, and efflux pumps.
- Epidemiology of CD is closely linked to the evolution and spread of antibiotic resistance.
- Distinct geographical patterns exist for CD strain prevalence and their associated resistomes.
Conclusions:
- Understanding CD resistance mechanisms is vital for combating infections and guiding antibiotic stewardship.
- Strain-specific and epidemiologically driven resistance characteristics are important for surveillance.
- Identifying novel therapeutic targets is essential to address the growing threat of MDR CD.
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