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Updated: Nov 8, 2025

A Protocol to Characterize the Morphological Changes of Clostridium difficile in Response to Antibiotic Treatment
Published on: May 25, 2017
Antimicrobial resistance surveillance of Clostridioides difficile in Australia, 2015-18
Papanin Putsathit1, Stacey Hong2,3, Narelle George4
1School of Medical and Health Sciences, Edith Cowan University, Joondalup 6027, WA, Australia.
Background:
Clostridioides difficile was listed as an urgent antimicrobial resistance (AMR) threat in a report by the CDC in 2019. AMR drives the evolution of C. difficile and facilitates its emergence and spread. The C. difficile Antimicrobial Resistance Surveillance (CDARS) study is nationwide longitudinal surveillance of C. difficile infection (CDI) in Australia.
Objectives:
To determine the antimicrobial susceptibility of C. difficile isolated in Australia between 2015 and 2018.
Methods:
A total of 1091 strains of C. difficile were collected over a 3 year period by a network of 10 diagnostic microbiology laboratories in five Australian states. These strains were tested for their susceptibility to nine antimicrobials using the CLSI agar incorporation method.
Results:
All strains were susceptible to metronidazole, fidaxomicin, rifaximin and amoxicillin/clavulanate and low numbers of resistant strains were observed for meropenem (0.1%; 1/1091), moxifloxacin (3.5%; 38/1091) and vancomycin (5.7%; 62/1091). Resistance to clindamycin was common (85.2%; 929/1091), followed by resistance to ceftriaxone (18.8%; 205/1091). The in vitro activity of fidaxomicin [geometric mean MIC (GM) = 0.101 mg/L] was superior to that of vancomycin (1.700 mg/L) and metronidazole (0.229 mg/L). The prevalence of MDR C. difficile, as defined by resistance to ≥3 antimicrobial classes, was low (1.7%; 19/1091).
Conclusions:
The majority of C. difficile isolated in Australia did not show reduced susceptibility to antimicrobials recommended for treatment of CDI (vancomycin, metronidazole and fidaxomicin). Resistance to carbapenems and fluoroquinolones was low and MDR was uncommon; however, clindamycin resistance was frequent. One fluoroquinolone-resistant ribotype 027 strain was detected.
Insights
Antimicrobial resistance in Clostridioides difficile is a growing concern. Australian surveillance shows most C. difficile strains remain susceptible to key treatments, but clindamycin resistance is high.
Area of Science:
- Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Clostridioides difficile infection (CDI) is a significant public health threat, exacerbated by antimicrobial resistance (AMR).
- The Centers for Disease Control and Prevention (CDC) identified C. difficile as an urgent AMR threat in 2019.
- The C. difficile Antimicrobial Resistance Surveillance (CDARS) study monitors CDI nationwide in Australia.
Purpose of the Study:
- To assess the antimicrobial susceptibility patterns of C. difficile isolates in Australia.
- To provide data on resistance trends between 2015 and 2018.
Main Methods:
- Collected 1091 C. difficile strains from 10 Australian diagnostic microbiology laboratories over three years.
- Tested isolate susceptibility to nine key antimicrobials using the Clinical and Laboratory Standards Institute (CLSI) agar incorporation method.
Main Results:
- High susceptibility observed for metronidazole, fidaxomicin, rifaximin, and amoxicillin/clavulanate.
- Low resistance rates for meropenem (0.1%), moxifloxacin (3.5%), and vancomycin (5.7%).
- Frequent resistance to clindamycin (85.2%) and ceftriaxone (18.8%); low multidrug resistance (MDR) prevalence (1.7%).
Conclusions:
- Most C. difficile strains in Australia maintain susceptibility to recommended CDI treatments (vancomycin, metronidazole, fidaxomicin).
- Low resistance to carbapenems and fluoroquinolones, with uncommon MDR, contrasts with high clindamycin resistance.
- Detection of one fluoroquinolone-resistant ribotype 027 strain warrants continued surveillance.
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