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In Vitro Restoration of Colistin Susceptibility by Ivacaftor Synergy with Limited Reproducibility in a Murine
Ana Verónica Halperin1, Franziska Schwartz2, Lars Christophersen2
1Servicio de Microbiologia, Hospital Universitario Ramón y Cajal and Instituto Ramón y Cajal de Investigación Sanitaria (IRYCIS), 28034 Madrid, Spain.
Abstract:
Background: We aimed to investigate the potential synergistic effect of ivacaftor combined with colistin against Pseudomonas aeruginosa and Klebsiella pneumoniae, and to elucidate the underlying molecular mechanisms through metabolomic analysis and its reproducibility in a murine model. Methods: Six colistin-susceptible and 2 colistin-resistant cystic fibrosis P. aeruginosa isolates, along with two colistin-resistant K. pneumoniae clinical isolates, were studied. Antimicrobial susceptibility was assessed by broth microdilution, and synergy by checkerboard assay. Metabolomic profiling was conducted via LC-HRMS with statistical analysis. A murine pneumonia model, induced by intranasal administration of colistin-resistant strains, was used to validate in vivo ivacaftor and colistin synergy after 24 h. Results: No previously described colistin resistance mutations were identified in P. aeruginosa strains, whereas K. pneumoniae carried mgrB variations. Ivacaftor restored colistin susceptibility at 16 mg/L concentration, and at 1-2 mg/L led to at least a twofold reduction in colistin MIC. Metabolomic analysis of colistin-resistant P. aeruginosa strains revealed that ivacaftor induced modifications in phosphoethanolamine groups of lipid A. However, no synergistic effects were observed in the short-term in vivo pneumonia model, regardless of the administration route. Conclusions: Ivacaftor exhibited no direct antimicrobial activity against P. aeruginosa and K. pneumoniae isolates in vitro but restored colistin susceptibility through synergistic interactions. The lack of synergy in the murine pneumonia model may reflect treatment time and challenges in standardizing in vivo conditions. These findings highlight the potential of ivacaftor as an adjunct to colistin therapy, warranting further investigation into its clinical applicability.
Insights
Ivacaftor restored colistin susceptibility in vitro against Pseudomonas aeruginosa and Klebsiella pneumoniae by altering lipid A. However, this synergy was not observed in a murine pneumonia model, suggesting further research is needed.
Area of Science:
- Microbiology
- Pharmacology
- Molecular Biology
Background:
- Investigating synergistic effects of ivacaftor and colistin against resistant bacteria.
- Elucidating molecular mechanisms via metabolomics.
- Validating findings in a murine pneumonia model.
Purpose of the Study:
- To determine if ivacaftor enhances colistin's efficacy against Pseudomonas aeruginosa and Klebsiella pneumoniae.
- To uncover the molecular basis of this interaction using metabolomic analysis.
- To assess the in vivo relevance in a murine model.
Main Methods:
- Antimicrobial susceptibility testing (broth microdilution, checkerboard assay).
- Metabolomic profiling using LC-HRMS.
- Murine pneumonia model for in vivo synergy assessment.
Main Results:
- Ivacaftor restored colistin susceptibility in vitro, reducing colistin MIC.
- Metabolomic analysis indicated ivacaftor modifies lipid A phosphoethanolamine groups in resistant P. aeruginosa.
- No synergistic effects were observed in the short-term murine pneumonia model.
Conclusions:
- Ivacaftor acts synergistically with colistin in vitro, restoring susceptibility without direct antimicrobial activity.
- The lack of in vivo synergy in the murine model may be due to experimental limitations.
- Ivacaftor shows potential as an adjunctive therapy for colistin, requiring further clinical investigation.
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