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Successful Bacteriophage-Antibiotic Combination Therapy against Multidrug-Resistant Pseudomonas aeruginosa Left
Karlis Racenis1,2,3, Janis Lacis4,5, Dace Rezevska1,6
1Department of Biology and Microbiology, Riga Stradins University, LV-1007 Riga, Latvia.
Abstract:
There is considerable interest in the use of bacteriophages (phages) to treat Pseudomonas aeruginosa infections associated with left ventricular assist devices (LVADs). These infections are often challenging to manage due to high rates of multidrug resistance and biofilm formation, which could potentially be overcome with the use of phages. We report a case of a 54-year-old man with relapsing multidrug-resistant P. aeruginosa LVAD driveline infection, who was treated with a combination of two lytic antipseudomonal phages administered intravenously and locally. Treatment was combined with LVAD driveline repositioning and systemic antibiotic administration, resulting in a successful outcome with clinical cure and eradication of the targeted bacteria. However, laboratory in vitro models showed that phages alone could not eradicate biofilms but could prevent biofilm formation. Phage-resistant bacterial strains evolved in biofilm models and showed decreased susceptibility to the phages used. Further studies are needed to understand the complexity of phage resistance and the interaction of phages and antibiotics. Our results indicate that the combination of phages, antibiotics, and surgical intervention can have great potential in treating LVAD-associated infections. More than 21 months post-treatment, our patient remains cured of the infection.
Insights
Bacteriophages (phages) combined with antibiotics and surgery successfully treated a multidrug-resistant Pseudomonas aeruginosa infection in a left ventricular assist device (LVAD) patient. Phages prevented biofilm formation but did not eradicate existing biofilms in vitro.
Area of Science:
- Infectious Diseases
- Microbiology
- Biotechnology
Background:
- Left ventricular assist device (LVAD) infections caused by Pseudomonas aeruginosa present significant challenges due to multidrug resistance and biofilm formation.
- Bacteriophages (phages) are being explored as a therapeutic alternative for difficult-to-treat bacterial infections.
Observation:
- A case study involving a 54-year-old male patient with recurrent, multidrug-resistant P. aeruginosa LVAD driveline infection.
Findings:
- A combination therapy of intravenous and local lytic antipseudomonal phages, alongside LVAD driveline repositioning and systemic antibiotics, achieved clinical cure and bacterial eradication.
- In vitro models indicated that phages alone could prevent, but not eradicate, P. aeruginosa biofilms.
- Phage-resistant bacterial strains emerged in biofilm models, exhibiting reduced susceptibility to the phages.
Implications:
- Combined phage, antibiotic, and surgical interventions show promise for managing LVAD-associated P. aeruginosa infections.
- Further research is necessary to elucidate phage resistance mechanisms and phage-antibiotic interactions.
- The patient remained infection-free for over 21 months post-treatment, highlighting the long-term efficacy of the multimodal approach.
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