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临床试验/NCT01605214
NCT01605214Unknown不适用

Measurement of Extravascular Lung Water to Detect and Predict Primary Graft Dysfunction Following Lung Transplant

University Health Network, Toronto1 个研究点 分布在 1 个国家目标入组 60 人开始时间: 2015年10月最近更新:
适应症

试验速览

阶段
不适用
入组人数
60
试验地点
1
主要终点
AIM 1: The presence of pulmonary edema on chest X ray (CXR) at 24 hours determined by blinded CXR reviewers

研究概览

简要总结

Primary graft dysfunction (PGD) is the most common cause of early morbidity and mortality following lung transplant and is characterized by acute lung injury and capillary leak leading to an increase in extravascular lung water index (ELWI) and impaired graft function. PGD has many features in common with acute respiratory distress syndrome (ARDS). PGD may be life-threatening and can also lead to impaired long term lung function. In ARDS, a restrictive fluid strategy has been associated with an improvement in lung function and outcomes. Accurate methods of evaluating, quantifying and guiding the hemodynamic / fluid management and limiting the extent of ELWI that accumulates in the setting of PGD are lacking. Using transpulmonary thermodilution to estimate ELWI and the pulmonary permeability index (PPI) represents a novel approach to fluid management, which has been used in patients with ARDS, but to date not in the transplant setting. To determine if these measurements may better guide the management of lung transplant patients, the investigators first wish to establish whether these methods are able to predict the onset of clinical pulmonary edema earlier, whether they correlated with traditional markers of PGD, and whether they may be useful for predicting outcomes.

AIM 1: The investigators will evaluate the correlation between ELWI and current surrogates of pulmonary edema in lung transplant patients with and without Primary Graft Dysfunction (PGD)

AIM 2: The investigators will correlate the use of ELWI and PPI to determine the presence and severity of PGD.

AIM 3: a) The investigators will determine whether early measurements of ELWI and PPI can predict the onset of PGD.

b) Across different strata of PGD, the investigators will determine whether ELWI and PPI have a differential effect on duration of mechanical ventilation.

The results of the study will be used for the following:

  1. Provide the rationale for routine monitoring of ELWI to detect PGD if found to be more discriminatory and have a stronger association with outcome compared to the current gold standard.
  2. Provide the means of early identification of those as risk of developing PGD in order to guide management decisions or future therapeutic interventions aimed at preventing or treating PGD.
  3. Provide the requisite groundwork for a clinical trial comparing the effects of an ELWI-driven protocol versus usual care on ICU outcomes in lung transplant recipients.

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

入选标准

  • All consecutive bilateral lung transplant recipients

排除标准

  • Immediate need for extracorporeal life support following transplant (those requiring ECLS four hours after intensive care admission can be included as the investigators would have obtained some ELWI measurements)
  • Contraindications to femoral artery catheterization (eg, abdominal aortic aneurysm)

结局指标

主要结局

AIM 1: The presence of pulmonary edema on chest X ray (CXR) at 24 hours determined by blinded CXR reviewers

时间窗: 24 hours following lung transplant

On post operative day 1 (24 hours following lung transplant), the investigators will evaluate whether extravascular lung water measured at 24 hours correlates with pulmonary edema determined by reviewers of the CXR blinded to the extravascular lung water measurement. The investigators will use Pearson's correlation for normally distributed and Spearman's correlation for non-normally distributed values. A correlation coefficient of \>0.8 will be considered a strong correlation

AIM 2: The presence of primary graft dysfunction at 24 hours determined by CXR evidence of bilateral airspace disease and Pa02/FiO2 ratio threshold by reviewers blinded to the extravascular lung water and pulmonary permeability measurements at 24

时间窗: 24 hours

24 hours following lung transplant, the investigators will evaluate whether the combination of extravascular lung water and pulmonary permeability measurements at 24 hours correlate with the presence and severity of primary graft dysfunction (PGD) at 24 hours. The median extravascular lung water and pulmonary permeability measurements will be calculated. The combinations of above/below median extravascular lung water with above/below median pulmonary permeability will be correlated to the presence of PGD. (eg. high ELWI + high PPI, high ELWI + low PPI, low ELWI + high PPI, low ELWI + low PPI) using Pearson's and Spearman's correlation where appropriate. Grade 0 PGD - Normal CXR AND a PaO2/FiO2 \>300mmHg Grade 1 PGD - Bilateral airspace disease on CXR with AND a PaO2/FiO2 \>300mmHg Grade 2 PGD - Bilateral airspace disease on CXR with AND a PaO2/FiO2 200-300mmHg Grade 3 PGD - Bilateral airspace disease on CXR with AND a PaO2/FiO2 \<200mmHg.

AIM 3: The presence of primary graft dysfunction at 24 hours determined by CXR and Pa02/FiO2 ratio by reviewers blinded to early (time 0) extravascular lung water and pulmonary permeability measurements

时间窗: Time 0 extravascular lung water and pulmonary permeability measurements and primary graft dysfunction at 24 hours

The investigators will compare whether immediate (time 0) post operative measurements of the combination of extravascular lung water and pulmonary permeability can predict the later onset (24 hours) of primary graft dysfunction. The combinations of above/below median extravascular lung water with above/below median pulmonary permeability will be correlated to the presence of PGD. (eg. high ELWI + high PPI, high ELWI + low PPI, low ELWI + high PPI, low ELWI + low PPI) using logistic regression. Grade 0 PGD - Normal CXR AND a PaO2/FiO2 \>300mmHg Grade 1 PGD - Bilateral airspace disease on CXR with AND a PaO2/FiO2 \>300mmHg Grade 2 PGD - Bilateral airspace disease on CXR with AND a PaO2/FiO2 200-300mmHg Grade 3 PGD - Bilateral airspace disease on CXR with AND a PaO2/FiO2 \<200mmHg.

次要结局

  • AIM 1: The presence of pulmonary edema on chest X ray at 48 and 72 hours evaluated by CXR reviewers blinded to the extravascular lung water measurements measured at 48 and 72 hours(48 and 72 hours following lung transplant)
  • AIM 2: The presence of late primary graft dysfunction determined by CXR and PaO2/FiO2 ratio evaluated by reviewers blinded to the extravascular lung water and pulmonary permeability measurements evaluated at 48 and 72 hours(48 and 72 hours following lung transplant)
  • AIM 3: The presence of late primary graft dysfunction (48 and 72 hours) determined by CXR and PaO2/FiO2 ratio evaluated by reviewers blinded to the extravascular lung water and pulmonary permeability measurements at time 0(Extravascular lung water and pulmonary permeability measurements at time 0 hours, primary graft dysfunction determination at 48 or 72 hours)
  • AIM 3: The presence of any primary graft dysfunction determined by CXR and PaO2/FiO2 ratio (24, 48 or 72 hours) evaluated by reviewers blinded to the early extravascular lung water and pulmonary permeability measurements (6 hours and 12 hours)(Extravascular lung water and pulmonary permeability measurements at 6 hours and 12 hours, any primary graft dysfunction determined at 24, 48 or 72 hours)
  • AIM 3: Duration of mechanical ventilation(Extravascular lung water and pulmonary permeability measurements at 24 hours, Hospital admission following lung transplant)

研究者

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

John Granton

Dr. John T. Granton, Professor, Division Head of Respirology

University Health Network, Toronto

研究点 (1)

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