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Isolation and Identification of Waterborne Antibiotic-Resistant Bacteria and Molecular Characterization of their Antibiotic Resistance Genes
Published on: March 3, 2023
When Good Bugs Go Bad: Epidemiology and Antimicrobial Resistance Profiles of Corynebacterium striatum, an Emerging
Allison R McMullen1, Neil Anderson1, Meghan A Wallace1
1Department of Pathology & Immunology, Washington University in St. Louis School of Medicine, St. Louis, Missouri, USA.
Abstract:
Infections with Corynebacterium striatum have been described in the literature over the last 2 decades, with the majority being bacteremia, central line infections, and occasionally, endocarditis. In recent years, the frequency of C. striatum infections appears to be increasing; a factor likely contributing to this is the increased ease and accuracy of the identification of Corynebacterium spp., including C. striatum, from clinical cultures. The objective of this study was to retrospectively characterize C. striatum isolates recovered from specimens submitted as part of routine patient care at a 1,250-bed, tertiary-care academic medical center. Multiple strain types were recovered, as demonstrated by repetitive-sequence-based PCR. Most of the strains of C. striatum characterized were resistant to antimicrobials commonly used to treat Gram-positive organisms, such as penicillin, ceftriaxone, meropenem, clindamycin, and tetracycline. The MIC50 for ceftaroline was >32 μg/ml. Although there are no interpretive criteria for susceptibility with telavancin, it appeared to have potent in vitro efficacy against this species, with MIC50 and MIC90 values of 0.064 and 0.125 μg/ml, respectively. Finally, as previously reported in case studies, we demonstrated rapid in vitro development of daptomycin resistance in 100% of the isolates tested (n = 50), indicating that caution should be exhibited when using daptomycin for the treatment of C. striatum infections. C. striatum is an emerging, multidrug-resistant pathogen that can be associated with a variety of infection types.
Insights
Corynebacterium striatum infections are increasing, often showing multidrug resistance. Telavancin shows in vitro efficacy, but rapid daptomycin resistance emerges, requiring cautious use.
Area of Science:
- Clinical Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Corynebacterium striatum infections, including bacteremia and central line infections, have been documented over two decades.
- The incidence of C. striatum infections is rising, potentially due to improved diagnostic methods.
- This bacterium is increasingly recognized as a cause of diverse infections.
Purpose of the Study:
- To retrospectively characterize C. striatum isolates from a tertiary-care medical center.
- To evaluate the antimicrobial susceptibility patterns of C. striatum.
- To assess the in vitro efficacy of specific antibiotics against C. striatum.
Main Methods:
- Retrospective analysis of C. striatum isolates from clinical specimens.
- Repetitive-sequence-based PCR used for strain typing.
- Antimicrobial susceptibility testing including MIC determination for various agents.
Main Results:
- Multiple C. striatum strain types were identified.
- Most isolates exhibited resistance to common Gram-positive antibiotics (penicillin, ceftriaxone, meropenem, clindamycin, tetracycline).
- High MIC50 for ceftaroline (>32 μg/ml) was observed, while telavancin demonstrated potent in vitro activity (MIC50/MIC90: 0.064/0.125 μg/ml).
- Rapid in vitro development of daptomycin resistance occurred in all tested isolates (n=50).
Conclusions:
- C. striatum is an emerging multidrug-resistant pathogen.
- Telavancin shows promising in vitro activity against C. striatum.
- Clinicians should exercise caution when using daptomycin due to rapid resistance development.
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