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NCT03963622NARecruiting

Careful Ventilation in Acute Respiratory Distress Syndrome (COVID-19 and Non-COVID-19)

Unity Health Toronto

Start Date

11/23/2020

Completion Date

9/1/2026

Summary

This is a multicenter randomized controlled clinical trial with an adaptive design assessing the efficacy of setting the ventilator based on measurements of respiratory mechanics (recruitability and effort) to reduce Day 60 mortality in patients with acute respiratory distress syndrome (ARDS). The CAVIARDS study is also a basket trial; a basket trial design examines a single intervention in multiple disease populations. CAVIARDS consists of an identical 2-arm mechanical ventilation protocol implemented in two different study populations (COVID-19 and non-COVID-19 patients). As per a typical basket trial design, the operational structure of both the COVID-19 substudy (CAVIARDS-19) and non-COVID-19 substudy (CAVIARDS-all) is shared (recruitment, procedures, data collection, analysis, management, etc.).

Detailed Description

Acute respiratory distress syndrome (ARDS) is a major public health problem affecting approximately 10% of patients in the intensive care unit (ICU) and 23% of all patients on a breathing machine (mechanical ventilator). The short-term mortality of patients with ARDS is approximately 40% and better ventilation of these patients has the greatest potential to improve outcomes. The lungs in patients with ARDS are severely inflamed which reduces lung volume and their ability to stretch, making ventilation difficult and dangerous. However, mechanical ventilation is the mainstay of supportive therapy. Although it is life-saving, it can also can generate secondary injury and inflammation, called ventilator-induced lung injury (VILI). The investigators know that inadequate mechanical ventilation worsens outcomes but are uncertain of the optimal way to manage ventilators at the bedside. Furthermore, ARDS is challenging because there is no treatment for the alveolar-capillary leak characterizing this syndrome; aside from treating the underlying cause, the only supportive therapy is mechanical ventilation. This is specially the case for COVID-19 induced ARDS. Despite best practices, over-distension of the lung or inappropriate positive end expiratory pressure (PEEP) is common. Finally, once spontaneous breathing has resumed and is assisted by the ventilator, an additional phenomenon occurs, called patient self-inflicted lung injury. The drive for breathing in many patients is stimulated by lung inflammation, and strong breathing efforts can generate high distending pressures, causing lung (and systemic) inflammation and organ damage. Whether the management of COVID-19 induced ARDS should differ from all other ARDS has been debated at length but has no clear response Recent advances in our understanding of bedside physiology (airway closure, recruitability, lung distension, respiratory drive) can now be applied for an individual titration of mechanical ventilation.

Eligibility Criteria

Age Range: 18 years to No maximum

Inclusion Criteria: 1. Age ≥ 18 y 2. Moderate or severe ARDS (PaO2/FiO2 ≤ 200 mmHg) within 48 h of meeting Berlin ARDS criteria (Patients who were eligible at the time of screening and whose PaO2/FiO2 became \> 200 mm Hg under prone positioning when starting the protocol remained eligible) Exclusion Criteria: 1. Received continuous mechanical ventilation \> 7 days 2. Known or clinically suspected elevated intracranial pressure (\>18mmHg) necessitating strict control of PaCO2 3. Known pregnancy 4. Broncho-pleural fistula 5. Severe liver disease (Child-Pugh Score ≥ 10) 6. BMI \>40kg/m2 7. Anticipating withdrawal of life support and/or shift to palliation as the goal of care 8. Patient is receiving ECMO at time of randomization

Interventions

OTHER

Respiratory Mechanics

OTHER

Standard Ventilation Strategy

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Conditions

ARDS

Locations

New York University Grossman School of Medicine

New York, New York 10016

United States

Centro de Educación Médica e Investigaciones Clínicas Dr Norberto Quirno (CEMIC)

Buenos Aires,

Argentina

Complejo Médico Policía Federal Argentina Churruca Visca

Buenos Aires,

Argentina

Hospital Británico de Buenos Aires

Buenos Aires,

Argentina

Sanatorio Anchorena Recoleta

Buenos Aires,

Argentina

Sanatorio Mater Dei

Buenos Aires,

Argentina

Sanatorio Anchorena San Martín

San Martin,

Argentina

St. Michael's Hospital

Toronto,

Canada

Toronto General Hospital

Toronto,

Canada

Toronto Western Hospital

Toronto,

Canada

Pontificia Universidad Católica de Chile

Santiago,

Chile

CHU Amiens-Picardie

Amiens,

France

Centre hospitalier universitaire d'Angers

Angers,

France

CH Victor Dupouy

Argenteuil,

France

CH de Beauvais

Beauvais,

France

CHU Bordeaux - Haut Leveque

Bordeaux,

France

Hopital de la Cavale Blanche - CHRU Brest

Brest,

France

CH de Cholet

Cholet,

France

Hopital Intercommunal de Creteil

Créteil,

France

CHU Grenoble-Alpes

Grenoble,

France

Hopital Roger Salengro - CHU Lille

Lille,

France

Groupe Hospitalier de la Region de Mulhouse et Sud Alsace

Mulhouse,

France

Hopital de l'Archet 1 - CHU de Nice

Nice,

France

Hopital Europeen Georges-Pompidou

Paris,

France

CHU de Poitiers - La Miletrie

Poitiers,

France

CH Bretagne Atlantique Vannes-Auray

Vannes,

France

HIA Robert Picque

Villenave-d'Ornon,

France

Arcispedale Sant'Anna

Ferrara,

Italy

University of Foggia

Foggia,

Italy

Policlinico Universitario Agostino Gemelli IRCCS

Rome,

Italy

OLVG

Amsterdam, North Holland

Netherlands

L'Hospital de la Santa Creu i Sant Pau

Barcelona,

Spain

Vall d'Hebron University Hospital

Barcelona,

Spain