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Published on: February 14, 2025
Heteroresistance to cefepime in Pseudomonas aeruginosa bacteraemia
Xiaojiong Jia1, Weijia Ma2, Jianchun He3
1Key Laboratory of Molecular Biology of Infectious Diseases Designated by the Chinese Ministry of Education, Institute for Viral Hepatitis, Department of Infectious Diseases, The Second Affiliated Hospital, Chongqing Medical University, Chongqing, China.
Introduction:
Heteroresistance to antibiotic agents can lead to diagnostic and therapeutic failures; however, to date, cefepime heteroresistance (FEP-HR) in Pseudomonas aeruginosa (P. aeruginosa) bacteraemia has not been characterised. The primary goal of this study was to investigate the molecular epidemiology, mechanisms and risk factors for cefepime-heteroresistant P. aeruginosa bacteraemia over approximately 6 years in Southwest China.
Results:
A high prevalence (57.3%) of heteroresistance to cefepime was observed during the study period, and these FEP-HR isolates were not clonally related. Mechanistic studies revealed that AmpC hyperproduction contributed to the development of this phenomenon. In addition, patients with advanced age, haematological malignancies, central venous catheters, and previous cephalosporin therapy were identified as independent risk factors for acquiring FEP-HR P. aeruginosa bacteraemia. Furthermore, patients infected with FEP-HR were generally at a greater risk for an adverse prognosis compared with those with non-FEP-HR. More importantly, characterisation of three successive P. aeruginosa isolates recovered from the same patient revealed that heteroresistance can act as an intermediate stage during the evolution from susceptibility to full resistance in patients undergoing antibiotic therapy for prolonged periods.
Conclusion:
These findings emphasised the necessity of antimicrobial stewardship programs in clinical settings, as well as the need for some rapid screening methods for detecting this phenomenon.
Insights
Cefepime heteroresistance (FEP-HR) in Pseudomonas aeruginosa bacteraemia is common (57.3%) and linked to AmpC hyperproduction. Early detection and antimicrobial stewardship are crucial for managing this resistance mechanism.
Area of Science:
- Clinical microbiology
- Infectious diseases
- Molecular epidemiology
Background:
- Antibiotic heteroresistance poses diagnostic and therapeutic challenges.
- Cefepime heteroresistance (FEP-HR) in Pseudomonas aeruginosa (P. aeruginosa) bacteraemia remains poorly characterized.
- This study investigates FEP-HR in P. aeruginosa bacteraemia in Southwest China.
Purpose of the Study:
- To investigate the molecular epidemiology of FEP-HR P. aeruginosa bacteraemia.
- To identify the mechanisms underlying FEP-HR.
- To determine risk factors and clinical outcomes associated with FEP-HR P. aeruginosa bacteraemia.
Main Methods:
- Epidemiological analysis of P. aeruginosa isolates over six years.
- Molecular characterization including AmpC expression analysis.
- Retrospective cohort study to identify risk factors and clinical outcomes.
Main Results:
- A high prevalence of FEP-HR (57.3%) was observed, with non-clonal isolates.
- AmpC hyperproduction was identified as a key mechanism.
- Advanced age, hematological malignancies, central venous catheters, and prior cephalosporin use were independent risk factors.
- FEP-HR infection was associated with a greater risk of adverse prognosis.
- Heteroresistance was shown to be an intermediate step in the evolution to full resistance.
Conclusions:
- Antimicrobial stewardship programs are essential for managing FEP-HR.
- Rapid screening methods for detecting FEP-HR are needed.
- Understanding FEP-HR is critical for improving patient outcomes in P. aeruginosa bacteraemia.
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