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A Double-Blind, Placebo-Controlled Study of Nebulized Bacteriophages in Patients With Ventilator-Associated Pneumonia Due to Pseudomonas Aeruginosa
Sponsor: Assistance Publique - Hôpitaux de Paris
Summary
Ventilator-associated pneumonia (VAP) complicates the hospital course of up to 40% of mechanically ventilated patients and is associated with mortality rates approaching 30%, despite appropriate antibiotic therapy (ATB). Gram-negative bacteria account for approximately 60% of VAP episodes, with Pseudomonas aeruginosa (Pa) being one of the most common pathogens. Recurrent Pa-VAP occurs in 19-33% of cases outside the COVID-19 setting, whereas recurrence rates as high as 79% have been reported in patients with COVID-19, most often caused by the same pathogen and frequently occurring despite adequate antibiotic therapy. Several attempts have been made to improve pulmonary antibiotic exposure by combining intravenous therapy with aerosolized antibiotics delivered through conventional nebulizers. However, clinical results have been disappointing, largely because standard jet nebulizers deliver less than 10% of the nominal dose to the lungs owing to high residual volumes, drug deposition within the ventilator circuit and endotracheal tube, and loss through the expiratory limb. Even with more efficient vibrating mesh nebulizers, two recent randomized con-trolled trials failed to demonstrate any clinical benefit of adjunctive nebulized antibiotics in patients with Gram-negative VAP. Bacteriophages are bacteria-specific viruses that have emerged as a promising therapeutic alternative for difficult-to-treat bacterial infections. Their highly specific host range allows selective targeting of pathogenic bacteria while sparing the commensal microbiota and human cells, thereby minimizing toxicity and off-target effects. An increasing body of preclinical evidence and clinical case reports supports the safety and potential efficacy of anti-P. aeruginosa phage therapy. More recently, a porcine model of Pa-VAP demonstrated that high concentrations of bacteriophages can be efficiently delivered to the lungs by nebulization during mechanical ventilation, resulting in rapid control of the pulmonary infection. The use of phages as compassionate treatment has been authorized in September 2021 in this indication using phages produced by Phagenix- ©. The aim of this placebo controlled study is to demonstrate the efficacy and safety of nebulized anti-Pa bacteriophages, delivered to the lung using a vi-brating mesh nebulizer, in addition to conventional IV ATB treatment.
Key Details
Gender
All
Age Range
18 Years - Any
Study Type
INTERVENTIONAL
Enrollment
184
Start Date
2026-11-03
Completion Date
2030-01-03
Last Updated
2026-09-04
Healthy Volunteers
No
Interventions
Bacteriophages GMP
Five administrations of phages daily from D1 to D5
saline solution (placebo)
Five administrations of saline solution daily from D1 to D5
Locations (16)
CHU Amiens
Amiens, France
CHU Amiens
Amiens, France
CHU Angers
Angers, France
Hôpital Avicenne
Bobigny, France
Hôpital Avicenne
Bobigny, France
CHU Clermont-Ferrand
Clermont-Ferrand, France
Hôpital Louis Mourier
Colombes, France
Hôpital Henri Mondor
Créteil, France
Hôpital Bicêtre
Le Kremlin-Bicêtre, France
CHU Nice
Nice, France
CHU Orléans
Orléans, France
Hôpital Pitié-Salpêtrière
Paris, France
Hôpital Pitié-Salpêtrière
Paris, France
Hôpital Pitié-Salpêtrière
Paris, France
Hôpital Pitié-Salpêtrière
Paris, France
Hôpital Pitié-Salpêtrière
Paris, France