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Improved Enzyme Protection Assay to Study Staphylococcus aureus Internalization and Intracellular Efficacy of Antimicrobial Compounds
Published on: September 8, 2021
Investigating a possible link between antiseptic treatment and the increased occurrence of daptomycin-resistant
Andreas F Wendel1, Robin Otchwemah1, Franziska Layer-Nicolaou2
1Institute of Hygiene, Cologne Merheim Medical Centre, University Hospital of Witten/Herdecke, Cologne, Germany; Division of Hygiene and Environmental Medicine, Department of Human Medicine, Faculty of Health, Witten/Herdecke University, Witten, Germany.
Objectives:
Because of a steady increase in the detection of daptomycin-resistant (DAP-R) Staphylococcus aureus at three medical centres in Cologne, Germany, molecular surveillance was established from June 2016 to June 2018 to investigate the causes of the emergence and spread of respective isolates. Seventy-five S. aureus isolates, both DAP-R and DAP-susceptible, were collected from 42 patients for further analysis.
Methods:
Broth microdilution was used to determine the MICs for DAP and polyhexamethylene biguanide/polyhexanide (PHMB). To investigate the effect of PHMB on the development of DAP resistance, we performed selection experiments with PHMB. All isolates studied were subjected to whole-genome sequencing. Epidemiological, clinical, microbiological and molecular data were analysed comparatively.
Results:
Acquisition of DAP resistance was mainly observed in patients with acute and chronic wounds (40/42, 96.2%) treated with antiseptic (32/42, 76.2%) rather than systemic antibiotic therapy using DAP or vancomycin (7/42, 16.7%). DAP-R S. aureus had a diverse genetic background; however, within individual patients, isolates were closely related. At least three potential transmission events were detected. Most DAP-R isolates had concomitant elevated MICs for PHMB (50/54, 92.6%), and in vitro selection experiments confirmed that PHMB treatment is capable of generating DAP resistance. DAP resistance could be linked to 12 different polymorphisms in the mprF gene in the majority of clinical isolates (52/54, 96.3%) as well as in all in vitro selected strains.
Discussion:
DAP resistance in S. aureus can occur independently of prior antibiotic therapy and can be selected by PHMB. Therefore, wound treatment with PHMB may trigger individual resistance development associated with gain-of-function mutations in the mprF gene.
Insights
Daptomycin resistance in Staphylococcus aureus can emerge from antiseptic wound treatment with polyhexamethylene biguanide (PHMB), not just antibiotics. This resistance is linked to mprF gene mutations, highlighting a potential risk in wound care.
Area of Science:
- Microbiology
- Molecular Biology
- Infectious Diseases
Background:
- Increasing detection of daptomycin-resistant (DAP-R) Staphylococcus aureus in Cologne, Germany.
- Need for molecular surveillance to understand the emergence and spread of DAP-R isolates.
Purpose of the Study:
- Investigate the causes of DAP-R Staphylococcus aureus emergence and spread.
- Determine the role of polyhexamethylene biguanide (PHMB) in DAP resistance development.
Main Methods:
- Collected 75 S. aureus isolates (DAP-R and DAP-susceptible) from 42 patients.
- Determined minimum inhibitory concentrations (MICs) for daptomycin (DAP) and PHMB using broth microdilution.
- Performed whole-genome sequencing and in vitro selection experiments with PHMB.
Main Results:
- DAP resistance primarily observed in patients with wounds treated with antiseptics (PHMB) rather than systemic antibiotics.
- Most DAP-R isolates showed elevated MICs for PHMB; in vitro experiments confirmed PHMB selects for DAP resistance.
- DAP resistance linked to polymorphisms in the mprF gene in clinical and selected strains.
Conclusions:
- Daptomycin resistance in S. aureus can develop independently of antibiotic therapy and be selected by PHMB.
- Wound treatment with PHMB may induce DAP resistance via gain-of-function mutations in the mprF gene.
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