Abstract

IntroductionThe Berlin definition divides acute respiratory distress syndrome (ARDS) into three severity categories. The relationship between these categories and pulmonary microvascular permeability as well as extravascular lung water content, which is the hallmark of lung pathophysiology, remains to be elucidated. The aim of this study was to evaluate the relationship between extravascular lung water, pulmonary vascular permeability, and the severity categories as defined by the Berlin definition, and to confirm the associated predictive validity for severity.MethodsThe extravascular lung water index (EVLWi) and pulmonary vascular permeability index (PVPI) were measured using a transpulmonary thermodilution method for three consecutive days in 195 patients with an EVLWi of ≥10 mL/kg and who fulfilled the Berlin definition of ARDS. Collectively, these patients were seen at 23 ICUs. Using the Berlin definition, patients were classified into three categories: mild, moderate, and severe.ResultsCompared to patients with mild ARDS, patients with moderate and severe ARDS had higher acute physiology and chronic health evaluation II and sequential organ failure assessment scores on the day of enrollment. Patients with severe ARDS had higher EVLWi (mild, 16.1; moderate, 17.2; severe, 19.1; P <0.05) and PVPI (2.7; 3.0; 3.2; P <0.05). When categories were defined by the minimum PaO2/FIO2 ratio observed during the study period, the 28-day mortality rate increased with severity categories: moderate, odds ratio: 3.125 relative to mild; and severe, odds ratio: 4.167 relative to mild. On independent evaluation of 495 measurements from 195 patients over three days, negative and moderate correlations were observed between EVLWi and the PaO2/FIO2 ratio (r = -0.355, P<0.001) as well as between PVPI and the PaO2/FIO2 ratio (r = -0.345, P <0.001). ARDS severity was associated with an increase in EVLWi with the categories (mild, 14.7; moderate, 16.2; severe, 20.0; P <0.001) in all data sets. The value of PVPI followed the same pattern (2.6; 2.7; 3.5; P <0.001).ConclusionsSeverity categories of ARDS described by the Berlin definition have good predictive validity and may be associated with increased extravascular lung water and pulmonary vascular permeability.Trial registrationUMIN-CTR ID UMIN000003627

Highlights

  • The Berlin definition divides acute respiratory distress syndrome (ARDS) into three severity categories

  • Characteristics of patients with ARDS based on the Berlin definition on the day of enrollment All 195 patients who presented with respiratory failure not fully explained by cardiac failure or volume overload, who fulfilled the Berlin definition, were included

  • The levels of positive end-expiratory pressure (PEEP) were similar among stages, the level of FIO2 required increased with ARDS severity

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Summary

Introduction

The Berlin definition divides acute respiratory distress syndrome (ARDS) into three severity categories. Many clinical trials have been performed since publication of the AECC definition, several issues regarding the definition have emerged These include a lack of explicit criteria for defining acute manifestations of the disease, sensitivity of the PaO2/FIO2 ratio (P/F ratio) to different ventilator settings, poor reliability of the chest radiograph criterion, and difficulties in distinguishing hydrostatic edema [3,4,5,6]. These criteria are not sensitive predictors of disease severity or patient outcome [7,8,9,10,11]

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