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Updated: Aug 30, 2025

Experimental Endocarditis Model of Methicillin Resistant Staphylococcus aureus MRSA in Rat
Published on: June 4, 2012
Subtherapeutic Doses of Vancomycin Synergize with Bacteriophages for Treatment of Experimental Methicillin-Resistant
Jonathan Save1, Yok-Ai Que2, José Entenza3
1Center for Research and Innovation in Clinical Pharmaceutical Sciences, University Hospital of Lausanne, CH-1011 Lausanne, Switzerland.
Abstract:
Background. Recurrent therapeutic failures reported for the treatment of methicillin-resistant Staphylococcus aureus (MRSA) infective endocarditis (IE) with vancomycin may be due to poor bactericidal activity. Alternative antibacterial approaches using bacteriophages may overcome this limitation. Objectives. An experimental rat model of MRSA IE (EE) was used to examine the efficacy of vancomycin combined with a 1:1 bacteriophage (phage) cocktail composed of Herelleviridae vB_SauH_2002 and Routreeviridae 66. Methods. Six hours after inoculation with ca. 5 log10 colony forming units (CFU) of MRSA strain AW7, animals were treated with either: (i) saline, (ii) an equimolar two-phage cocktail (bolus of 1 mL followed by a 0.3 mL/h continuous infusion of 10 log10 plaque forming units (PFU)/mL phage suspension), (iii) vancomycin (at a dose mimicking the kinetics in humans of 0.5 g b.i.d.), or (iv) a combination of both. Bacterial loads in vegetations, and phage loads in vegetations, liver, kidney, spleen, and blood, were measured outcomes. Results. Phage cocktail alone was unable to control the growth of strain AW7 in cardiac vegetations. However, when combined with subtherapeutic doses of vancomycin, a statistically significant decrease of ∆4.05 ± 0.94 log10 CFU/g at 24 h compared to placebo was detected (p < 0.001). The administration of vancomycin was found to significantly impact on the local concentrations of phages in the vegetations and in the organs examined. Conclusions. Lytic bacteriophages as an adjunct treatment to the standard of care antibiotics could potentially improve the management of MRSA IE. Further studies are needed to investigate the impact of antibiotics on phage replication in vivo.
Insights
Bacteriophages combined with vancomycin show promise for treating methicillin-resistant Staphylococcus aureus (MRSA) infective endocarditis (IE). This combination therapy significantly reduced bacterial growth in a rat model, offering a potential new strategy for difficult-to-treat MRSA infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Recurrent treatment failures in MRSA infective endocarditis (IE) suggest vancomycin's limitations.
- Bacteriophages offer an alternative antibacterial strategy to overcome vancomycin resistance.
Purpose of the Study:
- To evaluate the efficacy of a bacteriophage cocktail combined with vancomycin in a rat model of MRSA IE.
- To assess the impact of vancomycin on phage concentrations in vivo.
Main Methods:
- An experimental rat model of MRSA IE was established.
- Animals were treated with vancomycin, a two-phage cocktail, or a combination therapy.
- Bacterial and phage loads were quantified in vegetations and organs.
Main Results:
- The phage cocktail alone did not control MRSA growth in cardiac vegetations.
- Combination therapy with subtherapeutic vancomycin significantly reduced bacterial load (∆4.05 log10 CFU/g).
- Vancomycin administration affected local phage concentrations in vegetations and organs.
Conclusions:
- Lytic bacteriophages may improve MRSA IE management as an adjunct to standard antibiotic therapy.
- Further research is required to understand antibiotic effects on phage replication in vivo.
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