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Inhaled Dornase Alpha to Reduce Respiratory Failure After Severe Trauma

Study acronym: TRAUMADORNASE
StatusRecruiting
PhasePhase 3
Started2019-03-04
View on ClinicalTrials.gov ↗

Amendment history

2026-08-18
minor
2 amendments v12-v13
2 re-verifications since 2025-08-04, no change to tracked fields
2024-08-28
minor
Study Status v11
Primary completion date2024-09-01→2027-09-01
Completion date2024-12-01→2027-12-01
2023-08-10
minor
Study Status v10
Re-verified, no change to tracked fields
2022-07-07
minor
Study Status v9
Completion date2024-09-01→2024-12-01
2021-08-31
minor
Study Status v8
Primary completion date2022-10-01→2024-09-01
Completion date2022-11-01→2024-09-01
Show 7 earlier versions
2020-09-25
minor
Study Status v7
Re-verified, no change to tracked fields
2020-07-24
minor
Study Status v6
Primary completion date2021-10-01→2022-10-01
Completion date2021-10-01→2022-11-01
2019-08-20
notable
Not Yet Recruiting→Recruiting Study Status, Contacts/Locations v5
Trial statusNot Yet Recruiting→Recruiting
Start dateestimated 2019-03-01→confirmed 2019-03-04
Study sites0→1
2019-01-09
minor
Study Status v4
Start date2018-11-01→2019-03-01
2018-10-02
minor
Study Status, Oversight v3
Re-verified, no change to tracked fields
2018-08-24
minor
Study Identification, Study Status v2
Start date2018-09-01→2018-11-01
2017-12-11
minor
Study Identification, Study Status, Study Description, Arms and Interventions, Outcome Measures v1
Secondary endpoints7 entries, revised
Incidence of VAPVentilator-Associated Pneumonia (ATS and CDC definitionsVAP)
2017-12-08
minor
Original filing
Severe hypoxemia following trauma may happen in many circumstances (aspiration, ventilation-associated pneumonia, lung contusion...), most of which are not exclusively associated with a direct injury to the lungs. Severe trauma and associated musculoskeletal injuries result in the acute release of Damage-Associated Molecular Patterns (DAMPs) in plasma, many of which are made of nucleic acids. DAMPs then bind leukocytes and trigger NETosis (Neutrophil Extracellular Traps), the release of nuclear material coated with proteolytic enzymes, which ultimately promotes remote lung injury and acute respiratory distress syndrome (ARDS). Considering that many DAMPs and all NETs are made of nucleic acids, we hypothesize that dornase alfa, a commercially available recombinant desoxyribonuclease (DNAse) could reduce DAMPs and NETs-induced lung injury in severe trauma patients under mechanical ventilation in the intensive care unit (ICU). The primary objective is to demonstrate a reduction in the incidence of moderate to severe ARDS in severe trauma patients during the first seven ICU days from 45% to 30% by providing aerosolized dornase alfa once during the first two consecutive ICU days and compared to equivalent provision of placebo (NaCl 0,9%). The secondary objectives are to demonstrate, by using aerosolized dornase alfa compared to placebo: * an improvement in static lung compliance * a reduction in mechanical ventilation duration / an increase in ventilation-free ICU days * a reduction in the length of ICU stay * a reduction in the hospital length of stay * a reduction in multi-organ failure * a reduction in ventilator-associated pneumonia (VAP) * a reduction in mortality at day 28
Trial Details
NCT Number NCT03368092
Lead Sponsor University Hospital, Strasbourg, France
Conditions Multiple Trauma, Respiratory Distress Syndrome, Adult
Enrollment 500 participants
Start Date 2019-03-04
Primary Completion 2027-09-01 (estimated)
Study Completion 2027-12-01 (estimated)
Updated on ClinicalTrials.gov 2026-08-20