Personalized Mechanical Ventilation Guided by UltraSound in Patients with Acute Respiratory Distress Syndrome (PEGASUS): study protocol for an international randomized clinical trial.

Author:

Sinnige Jante1ORCID,Smit Marry1,Ghose Aniruddha2,de Grooth Harm-Jan3,Itenov Theis Skovsgaard4,Ischaki Eleni5,Laffey John6,Paulus Frederique1,Póvoa Pedro7,Pierrakos Charalampos8,Pisani Luigi9,Roca Oriol10,Schultz Marcus1,Szuldrzynski Konstanty11,Tuinman Pieter Roel3,Zimatore Claudio12,Bos Lieuwe1

Affiliation:

1. Amsterdam UMC - Locatie AMC: Amsterdam UMC Locatie AMC

2. Chattogram Medical College

3. Amsterdam UMC - VUMC location: Amsterdam UMC Locatie VUmc

4. Copenhagen University Hospital: Rigshospitalet

5. Evangelismos Athens General Hospital: Geniko Nosokomeio Athenon O Euangelismos

6. University Hospital Galway: Galway University Hospitals

7. Hospital de São Francisco Xavier: Hospital de Sao Francisco Xavier

8. UVC Brugmann

9. University of Bari Faculty of Medicine: Universita degli Studi di Bari Aldo Moro Scuola di Medicina

10. Corporació Sanitària Parc Tauli: Consorcio Corporacion Sanitaria Parc Tauli

11. Centralny Szpital Kliniczny Ministerstwa Spraw Wewnętrznych i Administracji w Warszawie: Panstwowy Instytut Medyczny Ministerstwa Spraw Wewnetrznych i Administracji

12. University of Bari Department of Emergency and Organ Transplantation: Universita degli Studi di Bari Aldo Moro Dipartimento dell'Emergenza e dei trapianti di organi

Abstract

Abstract

Background: Acute respiratory distress syndrome (ARDS) is a frequent cause of hypoxemic respiratory failure with a mortality rate of approximately 30%. Identifying ARDS subphenotypes based on “focal” or “non-focal” lung morphology has the potential to better target mechanical ventilation strategies of individual patients. However, classifying morphology through chest radiography or computed tomography is either inaccurate or impractical. Lung ultrasound (LUS) is a non-invasive bedside tool that can accurately distinguish “focal” from “non-focal” lung morphology. We hypothesize that LUS-guided personalized mechanical ventilation in ARDS patients leads to a reduction in 90-day mortality compared to conventional mechanical ventilation. Methods: The Personalized Mechanical Ventilation Guided by UltraSound in Patients with Acute Respiratory Distress Syndrome (PEGASUS) study is an investigator-initiated, international, randomized clinical trial (RCT), that plans to enroll 538 invasively ventilated adult intensive care unit (ICU) patients with moderate to severe ARDS. Eligible patients will receive a LUS exam to classify lung morphology as “focal” or “non-focal”. Thereafter, patients will be randomized within 12h after ARDS diagnosis to receive standard care or personalized ventilation where the ventilation strategy is adjusted to the morphology subphenotype, i.e., higher positive end-expiratory pressure (PEEP) and recruitment maneuvers for “non-focal” ARDS and lower PEEP and prone positioning for “focal” ARDS. The primary endpoint is all-cause mortality at day 90. Secondary outcomes are mortality at day 28, ventilator-free days at day 28, ICU length of stay, ICU mortality, hospital length of stay, hospital mortality, and number of complications (ventilator-associated pneumonia, pneumothorax, and need for rescue therapy). After a pilot phase of 80 patients, the correct interpretation of LUS images, and correct application of the intervention within the safe limits of mechanical ventilation will be evaluated. Discussion: PEGASUS is the first RCT that compares LUS-guided personalized mechanical ventilation with conventional ventilation in invasively ventilated patients with moderate and severe ARDS. If this study demonstrates that personalized ventilation guided by LUS can improve the outcomes of ARDS patients, it has the potential to shift the existing one-size-fits-all ventilation strategy towards a more individualized approach. Trial registration: The PEGASUS trial was registered before the inclusion of the first patient, https://clinicaltrials.gov/ (ID: NCT05492344).

Publisher

Research Square Platform LLC

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