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临床试验/NCT07026656
NCT07026656招募中不适用

Pre-clinical Diagnosis Using Integrated Microbial and Host Response Signatures to Improve Outcomes From Ventilator-associated Pneumonia in Critically Ill Children

University of Cambridge1 个研究点 分布在 1 个国家目标入组 300 人开始时间: 2025年4月14日最近更新:

试验速览

阶段
不适用
状态
招募中
入组人数
300
试验地点
1
主要终点
Characterise temporal shifts in microbial composition and the corresponding host immune response during prolonged mechanical ventilation

研究概览

简要总结

Ventilator-associated pneumonia (VAP), defined as pneumonia occurring 48 hours after initiation of invasive mechanical ventilation, is insidious in onset and severe in consequence. It is a critical issue affecting 10-20% of the 26,000 children admitted to the paediatric intensive care unit (PICU) each year. Infection typically leads to extended PICU stay, prolonged invasive mechanical ventilation, and increased mortality.

Despite its clinical significance, VAP remains poorly defined, as current diagnosis relies on non-specific criteria and the ability to obtain clinically meaningful cultures. VAP, deviates from conventional pneumonia, potentially originating, from tissue damage, changes to immune processes, and migration of gastrointestinal bacteria into the lung; all associated with prolonged mechanical ventilation. These factors, in combination with the clinical instability of PICU patients, mean that clinicians aggressively start antibiotic therapy despite a paucity of evidence to suggest the best regime. As a result, suspected VAP has been shown to account for nearly 40% of antibiotic exposure in the PICU, which has significant implications on anti-microbial resistance (AMR).

To address these challenges, novel diagnostic therapies are needed to optimise the treatment of VAP. These therapies should utilise our current understanding of the pathophysiology of VAP development, specifically, the infiltration of the lung microbiome by gut and oral bacteria during prolonged mechanical ventilation. To achieve this, molecular testing should be promoted allowing for rapid identification of lung pathogens. There is also growing evidence, for the investigation of predictive biomarkers for VAP available in both the blood and lungs, which when integrated into protocols may enhance diagnostic accuracy. These novel techniques may improve clinical outcomes for affected children while addressing the economic impact of prolonged hospital stays and mitigating AMR risks in PICUs.

研究设计

研究类型
Observational
观察模型
Cohort
时间视角
Prospective

入排标准

年龄范围
1 Month 至 16 Years(Child)
性别
All
接受健康志愿者

入选标准

  • PICU Admission
  • Requires 48 Hours Of Mechanical Ventilation

排除标准

  • Imminent death or palliative care pathway planned
  • Existing tracheostomy at time of admission
  • Known immunocompromised patient
  • Patient received a full course of systemic antimicrobials in the previous 6 weeks.
  • Known or suspected tuberculosis (TB).

结局指标

主要结局

Characterise temporal shifts in microbial composition and the corresponding host immune response during prolonged mechanical ventilation

时间窗: 3 years

Serial metagenomic profiling of the lung microbiome to establish microbial shifts. Concurrently, cytokines collected from blood and endotracheal aspirates will be taken to assess immune changes.

Characterise the AMR burden in VAP and its role in shaping the microbiome during infection.

时间窗: 3 years

Utilise metagenomic sequencing to identify AMR genes present on microbes and relate this to VAP development

Develop statistical and/or machine learning models leveraging these signatures independently, or in combination, to identify putative microbial and host biomarkers for early VAP diagnosis

时间窗: 3 years

次要结局

  • Prevalence of VAP(3 years)
  • 30 day mortality(3 years)
  • Time To Extubation(3 years)
  • Utilisation Of VAP Prevention Bundle(3 years)
  • Culture Results(3 years)
  • Days free of antimicrobial therapy in PICU at 7 days(3 years)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Nazima Pathan

FRCPCH PhD

University of Cambridge

研究点 (1)

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