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临床试验/NCT07804082
NCT07804082尚未招募3 期

A Double-Blind, Placebo-Controlled Study of Nebulized Bacteriophages in Patients With Ventilator-Associated Pneumonia Due to Pseudomonas Aeruginosa

Assistance Publique - Hôpitaux de Paris10 个研究点 分布在 1 个国家目标入组 184 人开始时间: 2026年11月3日最近更新:
适应症
干预措施
相关药物

试验速览

阶段
3 期
状态
尚未招募
入组人数
184
试验地点
10
主要终点
Proportion of patients alive and cured at D28 and without any recurrence of Pa-VAP between the initial episode and D28.

研究概览

简要总结

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.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
Triple (Participant, Care Provider, Investigator)

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Patients ≥ 18 years old
  • Intubated and mechanically ventilated for at least 48 hours
  • Mechanical ventilation expected to continue for at least 3 days
  • Clinical diagnosis of VAP
  • VAP due to P. aeruginosa (P. aeruginosa recovered at a significant level from lung sample (≥10^4/ml for BAL or ≥10^5/ml for tracheal aspirate or ≥10^3 CFU/ml for plugged telescopic catheter)
  • Signed informed consent from the patient or the patient's legal representative or a family member or a close relative. According to the legal conditions of emergency inclusion, randomization without the family member or the surrogate consent could be performed if the patient is unable to give his/her consent and if no legal representative/family member or close relative is present. Close relative/ legal representative/family member consent will be asked as soon as possible. The patient will be asked to give his/her consent for continuation of the trial when his/her condition will allow.
  • Patient with childbearing potential* should have reliable contraception for the all duration of the study
  • Affiliation to social security (AME excluded)

排除标准

  • Severe hypoxemia as defined by PaO2/FiO2 < 100 mmHg, except if the patient is on ECMO (extracorporeal membrane oxygenation)
  • Impossibility to set a tidal volume of 6 ml/kg of ideal body weight during nebulization without risk of barotrauma
  • Patients with cystic fibrosis, lung cancer, lung resection, known bronchial obstruction, or active tuberculosis
  • Patient not expecting to survive 48 hours after randomization
  • Polymicrobial VAP (presence of pathogens other than P. aeruginosa at a significant level in lung samples (≥10^4/ml for BAL or ≥10^5/ml for tracheal aspirate). If the culture retrieves oropharyngeal flora, even at a significant threshold, in addition to Pseudomonas aeruginosa, the patient is eligible.
  • Contraindication to nebulization
  • Participation in another interventional study evaluating drugs for VAP or being in the exclusion period following the end of a previous interventional study evaluating drugs for VAP
  • Pregnancy or breastfeeding
  • Patients under guardianship or curatorship

研究组 & 干预措施

Bacteriophages GMP

Experimental

Nebulization of bacteriophages PP1450, PP1777, PP1792 and PP1797 will be performed using a vibrating mesh nebulizer (Aerogen). The aerosol generator will be placed upstream of the heated humidifier, which will remain active during administration. The nebulizer chamber will be filled immediately prior to dosing. When clinically feasible, mechanical ventilation settings will be standardized (volume-controlled mode, tidal volume 6-8 mL/kg ideal body weight, respiratory rate 16-20/min, inspiratory flow <40 L/min), with no specific adjustments for PEEP or FiO₂. Sedation may be used to minimize patient-ventilator asynchrony. Nebulization is expected to last approximately 45-60 minutes. These settings are recommended but not mandatory.

干预措施: Bacteriophages GMP (Biological)

Saline solution

Placebo Comparator

Nebulization of saline solution will be performed using a vibrating mesh nebulizer (Aerogen). The aerosol generator will be placed upstream of the heated humidifier, which will remain active during administration. The nebulizer chamber will be filled immediately prior to dosing. When clinically feasible, mechanical ventilation settings will be standardized (volume-controlled mode, tidal volume 6-8 mL/kg ideal body weight, respiratory rate 16-20/min, inspiratory flow <40 L/min), with no specific adjustments for PEEP or FiO₂. Sedation may be used to minimize patient-ventilator asynchrony. Nebulization is expected to last approximately 45-60 minutes. These settings are recommended but not mandatory.

干预措施: saline solution (placebo) (Drug)

结局指标

主要结局

Proportion of patients alive and cured at D28 and without any recurrence of Pa-VAP between the initial episode and D28.

时间窗: Day 28

Cure is defined as : * Resolution of signs and symptoms of infection * Improvement of PaO2/FiO2 ratio as compared to value the day VAP is diagnosed * No appearance of new signs of sepsis All 3 criteria must be fulfilled 7 to 10 days after antibiotic initiation Recurrence is defined as: -a clinically suspected VAP (fever, radiological opacity, increase in ventilation need) A microbiological confirmation with Pa recovered at a significant level from lung sample (≥10\^4/ml for BAL or ≥10\^5/ml for tracheal aspirate or ≥ 10\^3 CFU/mL for plugged telescopic catheter).

次要结局

  • Resolution of ventilator-associated pneumonia symptoms(Day 7 +/- 3 days)
  • Incidence of new ventilator-associated pneumonia(Day 7 +/- 3 days and day 14)
  • Clinical improvement, defined by a modified Clinical pulmonary infection score <4 (range 0-12, with higher score indicating worse outcome) and no new Pseudomonas aeruginosa ventilator-associated pneumonia episode(Day 14)
  • Incidence of Pseudomonas aeruginosa detection in respiratory samples(Day 3, Day 5, Day 7, Day 10, Day 14 and Day 28)
  • Number of days alive(Day 28)
  • Number of day without invasive mechanical ventilation(Day 28)
  • Number of day without antibiotics(Day 28)
  • Anti-phage antibody presence and titers,(Day 1, 7, 10, 14 and 28)
  • Phage neutralization titers(Day 1, 7, 10, 14 and 28)
  • Mortality rate(Day 28 and Day 60)
  • Prevalence of ESBL-producing and carbapenem-resistant Gram-negative bacteria in fecal and tracheal aspirate samples(Day 28)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (10)

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