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Effects of Sevoflurane on Extravascular Lung Water and Pulmonary Vascular Permeability in Patients With ARDS

Effects of Sevoflurane on Extravascular Lung Water and Pulmonary Vascular Permeability in Patients With Acute Respiratory Distress Syndrome

Status
UNKNOWN
Phases
Phase 3
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04530188
Enrollment
68
Registered
2020-08-28
Start date
2020-11-30
Completion date
2022-11-30
Last updated
2020-08-28

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

ARDS, ARDS, Human

Keywords

ARDS, inhaled anesthetic, sevoflurane, extravascular lung water, pulmonary vascular permeability

Brief summary

The study will investigate the effects of inhaled sedation with sevoflurane using the AnaConDa device on extravascular lung water index (EVLWi) and the pulmonary vascular permeability index (PVPI) in patients with moderate to severe acute respiratory distress syndrome (ARDS). Improvement in oxygenation and decreases in lung inflammatory response has been demonstrated in patients with ARDS compared with intravenous sedation. However, preclinical data showing a decrease in lung edema has not been confirmed. The hypothesis is that inhaled sedation with sevoflurane reduces EVLWi and PVPI in patients with ARDS, assessed with the PiCCO device. Patients will receive either inhaled sedation (interventional group), or a sedation with propofol (control group). Both will be associated with remifentanil. Sedation will be monitored by bispectral index with a targeted value of 30-50. The primary outcome will be daily assessment of EVLWi and PVPI over time in patients sedated with sevoflurane compared to propofol. Secondary outcomes will include value of PVPI and EVLW at 48h after intubation, fluid administration, need in norepinephrine, time between cessation of sedation and trial of weaning sedation, ventilation free days, mortality at day 28, the partial pressure of arterial oxygen to fraction of inspired oxygen ratio (PaO2/FiO2), plasma and alveolar levels of cytokines (tumor necrosis factor (TNF)-α, interleukine (IL)-1β, IL-6, IL-8). These blood and alveolar samples will be done at baseline, on day 2 and on day 5. A sub-group analysis will be done in Covid-19 related ARDS. Decrease in PVPI and EVLWi with inhaled sevoflurane may be related to the decrease in lung edema in ARDS patients and may ultimately improve patient outcome.

Detailed description

Background: Inhaled sedation with volatile anesthetic agents has been proposed as an efficient and safe alternative to usual intravenous sedation such as propofol or midazolam in the intensive care unit. In acute respiratory distress syndrome (ARDS) models, preclinical studies comparing inhaled sedation to intravenous sedation showed that sedation with sevoflurane improves oxygenation, reduces the lung and systemic inflammatory response, decreases formation of alveolar edema and is associated with a less pronounced increase in extravascular lung water (EVLW, the amount of water contained in the lungs outside the pulmonary vasculature) or pulmonary vascular permeability index (PVPI), the ratio of EVLW over the pulmonary blood volume). Although benefits of inhaled sedation on inflammation and oxygenation have been shown in humans, its direct effect on EVLW or PVPI has never been evaluated in patients with ARDS. It could be important as their levels are factors independently associated with mortality in patients with ARDS. Aim: To evaluate the effect of inhaled sedation with sevoflurane in comparison with sedation with propofol on the degree of PVPI and the amount of EVLW in patients with moderate-to-severe ARDS. Hypothesis: The hypothesis is that inhaled sedation with sevoflurane reduces PVPI and EVLW in patients with ARDS compared to sedation with propofol.

Interventions

DRUGSevoflurane

Inhaled sedation with sevoflurane using the Anesthesia Conserving Device (AnaConDa-S, Sedana Medical, Danderyd, Sweden)

DRUGPropofol

Intravenous sedation with propofol, as already used in our ICU

Sponsors

Bicetre Hospital
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 99 Years
Healthy volunteers
No

Inclusion criteria

* Age ≥18 years * Presence of acute respiratory distress syndrome for ≤24 hours of all of the following conditions, within one week of a clinical insult or new or worsening respiratory symptoms: * PaO2/FiO2 \<150 mmHg with positive end-expiratory pressure (PEEP) ≥8 cmH2O (or, if arterial blood gas not available, SpO2/FiO2 that is equivalent to a * PaO2/FiO2 \<150 mmHg with PEEP ≥8 cmH2O and a confirmatory SpO2/FiO2 between 1-6 hours after the initial SpO2/FiO2 determination) * Bilateral opacities not fully explained by effusions, lobar/lung collapse, or nodules * Respiratory failure not fully explained by cardiac failure or fluid overload; need objective assessment (e.g., echocardiography) to exclude hydrostatic edema if no risk factor present * PaO2/FiO2 \<200 mmHg after meeting inclusion criteria and before randomization

Exclusion criteria

* Absence of affiliation to the French Sociale security * Patient under a tutelage measure or placed under judicial protection * Known pregnancy * Currently receiving ECMO therapy * Chronic liver disease defined as a Child-Pugh score of 12-15 * Severe hepatic failure * Expected duration of mechanical ventilation \<48 hours * Moribund patient, i.e. not expected to survive 24 hours despite intensive care Burns \>70% total body surface * Previous hypersensitivity or anaphylactic reaction to sevoflurane * Medical history of malignant hyperthermia * Medical history of liver disease attributed to previous exposure to a halogenated agent * Known hypersensitivity to propofol or any of its components * Suspected or proven intracranial hypertension * Tidal volume of 6 mL/kg predicted body weight (PBW) below 200 mL (as recommended by the manufacturer for the use of the AnaConDa-S (Sedana Medical, Danderyd, Sweden) * Enrollment in another interventional ARDS trial with direct impact on sedation and mechanical ventilation

Design outcomes

Primary

MeasureTime frameDescription
Time course of extravascular lung water (EVLW)Through study completion, up to 90 daysEVLW is the amount of water contained in the lungs outside the pulmonary vasculature. It can be measured using the transpulmonary thermodilution technique with the PiCCO2 device (Pulsion Medical Systems, Feldkirchen, Germany)
Time course of pulmonary vascular permeability index (PVPI)Through study completion, up to 90 daysPVPI is estimated using the transpulmonary thermodilution technique with the PiCCO2 device (Pulsion Medical Systems, Feldkirchen, Germany)

Secondary

MeasureTime frameDescription
Value of pulmonary vascular permeability index (PVPI)Day 2PVPI is estimated using the transpulmonary thermodilution technique with the PiCCO2 device (Pulsion Medical Systems, Feldkirchen, Germany)
Daily fluid balanceThrough study completion, up to 90 daysFluid balance will be calculated daily as fluid intake minus fluid output. It is expressed in mL/day.
Need in catecholaminesThrough study completion, up to 90 days
time between sedation cessation and first weaning trialThrough study completion, up to 90 days
Ventilator free daysDay 28ventilator-free days to taking into account death as a competing event
Correlation between data provided by transpulmonary thermodilution (extravascular lung water, pulmonary vascular permeability index, cardiac index, global end-diastolic volume) and 28-day mortalityup to 28 daysmaximal or minimal values, trend in values,
Oxygenation assessed with PaO2/FiO2 ratioDay 2
Plasma and alveolar levels of proinflammatory cytokines : tumor necrosis factor alpha (TNFα, interleukin (IL)-1β, IL-6, IL-8At enrollmentBlood samples and alveolar samples from a bronchoalveolar lavage to constitute a biological collection aimed at further investigating the effects of inhaled sedation with sevoflurane in patients with ARDS
Cardiac indexThrough study completion, up to 90 daysData provided by transpulmonary thermodilution. (unit: L/min/m2)
Global End Diastolic Volume indexThrough study completion, up to 90 daysData provided by transpulmonary thermodilution. (unit: mL/m2)
Blood pressureThrough study completion, up to 90 daysSystolic, diastolic and mean blood pressure
MortalityDay 28
Value of extravascular lung water index (EVLW)Day 2EVLW is the amount of water contained in the lungs outside the pulmonary vasculature. It can be measured using the transpulmonary thermodilution technique with the PiCCO2 device (Pulsion Medical Systems, Feldkirchen, Germany)

Contacts

Primary ContactXavier Monnet, MD, PhD
xavier.monnet@aphp.fr+33-(0)6660862669
Backup ContactChristopher lai, MD
christopher.lai@aphp.fr+33-(0)145212671

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026