Ultra-Protective Ventilation Facilitated by Extracorporeal Support
OtherPatients randomized to this intervention group will receive VV-ECMO with the ventilator set to minimize driving pressure and respiratory rate for ultra-protective ventilation.
NCT Number: NCT05440851
PRACTICAL is a randomized multifactorial adaptive platform trial for acute hypoxemic respiratory failure (AHRF). This platform trial will evaluate novel interventions for patients with AHRF across a range of severity states (i.e., not intubated, intubated with lower or higher respiratory system elastance, requiring extracorporeal life support) and across a range of investigational phases (i.e., preliminary mechanistic trials, full-scale clinical trials). AHRF is a common and life-threatening clinical syndrome affecting millions globally every year. Patients with AHRF are at high risk of death and long-term morbidity. Patients who require invasive mechanical ventilation are at risk of ventilator-induced lung injury and ventilator-induced diaphragm dysfunction. New treatments and treatment strategies are needed to improve outcomes for these very ill patients.
Utilizing advances in Bayesian adaptive trial design, the platform will facilitate efficient yet rigorous testing of new treatments for AHRF, with a particular focus on mechanical ventilation strategies and extracorporeal life support techniques as well as pharmacological agents and new medical devices.
The platform is designed to enable evaluation of novel interventions at a variety of stages of investigation, including pilot and feasibility trials, trials focused on mechanistic surrogate endpoints for preliminary clinical evaluation, and full-scale clinical trials assessing the impact of interventions on patient-centered outcomes.
A domain is defined as a set of interventions that are intended to act on specific mechanisms of injury using different variations of a common therapeutic strategy. A domain may also be a non-interventional study that addresses observational research questions by collecting specific data or outcomes that are not collected as part of other domains. Domains are intended to function independently of each other, allowing independent evaluation of multiple therapies and mechanistic pathways within the same patient.
Once feasibility is established, Bayesian adaptive statistical modelling will be used to evaluate treatment efficacy at regular interim adaptive analyses of the pre-specified outcomes for each intervention in each domain. These adaptive analyses will compute the posterior probabilities of superiority, futility, inferiority, or equivalence for pre-specified comparisons within domains. Each of these potential conclusions will be pre-defined prior to commencing the intervention trial. Decisions about trial results (e.g., concluding superiority or equivalence) will be based on pre-specified threshold values for posterior probability. The primary outcome of interest, the definitions for superiority, futility, etc. (i.e., the magnitude of treatment effect) and the threshold values of posterior probability required to reach conclusions for superiority, futility etc., will vary from intervention to intervention depending on the phase of investigation and the nature of the intervention being evaluated. All of these parameters will be pre-specified as part of the statistical design for each intervention trial.
In general, domains will be designed to evaluate treatment effect within four discrete clinical states: non-intubated patients, intubated patients with low respiratory system elastance (<2.5 cm H2O/(mL/kg)), intubated patients with high respiratory system elastance (≥2.5 cm H2O/(mL/kg)), and patients requiring extracorporeal life support. Where appropriate, the model will specify dynamic borrowing between states to maximize statistical information available for trial conclusions. In this perpetual trial design, different interventions may be added or dropped over time.
Where possible, the platform will be embedded within existing data collection repositories to enable greater efficiency in outcome ascertainment. Standardized systems for acquiring both physiological and biological measurements are embedded in the platform, to be acquired at sites with appropriate training, expertise, and facilities to collect those measurements.
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All sexes
Interventional
Not applicable
Royal Prince Alfred Hospital, Camperdown, New South Wales, Australia
EXPAND-ECLS domain: The EXPAND-ECLS pilot trial is a multi-center, randomized, open-label, feasibility trial, embedded as a domain within the PRACTICAL platform trial. The ULTIMATE arm of this domain will evaluate the effect of ultra-low intensity ventilation facilitated by CO2 removal through VV-ECMO versus best current conventional ventilation on all-cause hospital mortality among patients with early moderate-severe AHRF with high respiratory system elastance receiving potentially injurious mechanical ventilation. The PROACTIVE arm of this domain will evaluate the effect of ECMO-facilitated strategy of earlier awakening, extubation, and rehabilitation versus best current conventional ventilation on all-cause hospital mortality among patients with early moderate-severe AHRF with high respiratory system elastance receiving potentially injurious mechanical ventilation.
Invasive Mechanical Ventilation (IMV) Strategies domain: The IMV Strategies domain will evaluate multiple novel invasive ventilation strategies in comparison to conventional lung-protective ventilation in patients with acute hypoxemic respiratory failure (AHRF). Multiple approaches to mechanical ventilation are used, and the optimal approach is unknown. An efficient strategy to identify the best strategy is to compare multiple potential approaches simultaneously to determine more rapidly (a) which interventions are least effective (and should be dropped), and (b) which interventions result in the best outcomes for patients. In the current domain design, we will compare the current recommended ventilation strategy to two new approaches: a strategy that targets lung-inflating (driving) pressure instead of lung-inflating (tidal) volume, and a strategy that aims to maintain an optimal level of breathing effort to prevent diaphragm atrophy and injury while maintaining safe lung-inflating pressures.
CORT-E2 domain: The Corticosteroid Early and Extended (CORT-E2) Trial is a phase III, multicentre Bayesian randomized controlled trial (RCT), which includes two cohorts within the domain; one examining the role of early corticosteroids as compared to not extending in persisting AHRF due to COVID or non-COVID (Extended Cohort).
ESCAPE domain: Evaluating Subphenotypes in Immunocompromized Patients with ARF (ESCAPE) Domain is a prospective, multicentre observational cohort study, to identify subphenotypes across immunocompromised patients with acute hypoxemic respiratory failure (AHRF) using clinical characteristics and biomarkers. This study will prospectively collect biomarkers at the onset of AHRF which will allow us to characterize the underlying pathophysiology of AHRF with better precision.
WAVEFORM domain: The Clinical Implications of Potentially Injurious Patient-Ventilator Interactions (WAVEFORM domain) a prospective, multicentre observational cohort study, that aims at understanding the short- and long-term clinical consequences of longitudinal exposure to abnormal patient ventilation interactions in patients with AHRF, role of sedation as a mediator in this relationship. It aims at also exploring the heterogeneity of treatment effect of various mechanical ventilation strategies tested in the IMV based on the presence and burden of abnormal patient-ventilator interactions.
FLUDRO domain: The Fludrocortisone in Acute Hypoxemic Respiratory Failure with Airspace Disease (FLUDRO-1) domain is a phase II I trial. The trial aims to provide direct clinical evidence to resolve a critical long-standing question regarding the use of steroids in the treatment of AHRF with airspace disease.
FAST-3 domain: The Nebulized Furosemide for the Treatment of Pulmonary Inflammation in Patients with Respiratory Failure Secondary to Pulmonary Infection domain is a phase III trial. It aims to use nebulized furosemide as supportive therapy to improve Advanced Respiratory Support (ARS) free days up to day 28 in critically ill patients with AHRF.
IMV-ECLS domain: The Invasive Mechanical Ventilation Strategies in Venovenous-Extracorporeal Life Support (PRESSURE; Positive Pressure to Maintain Lung Recruitment during Extracorporeal Life Support for Acute Hypoxemic Respiratory failure) is a pilot and feasibility trial. It aims to identify which positive end-expiratory pressure (PEEP) strategies improve lung function in patients with AHRF supported by ECLS.
IMPROV domain: The Inspiratory Muscle Training in Patients Receiving Ongoing Mechanical Ventilation is a pilot and feasibility RCT. It is designed to establish the feasibility of a definitive RCT of inspiratory muscle training to accelerate recovery from AHRF.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
PRACTICAL Platform Inclusion Criteria:
PRACTICAL Platform Exclusion Criteria:
EXPAND-ECLS Domain Inclusion Criteria:
EXPAND-ECLS Domain Exclusion Criteria:
IMV Domain Inclusion Criteria:
IMV Domain Exclusion Criteria:
CORT-E2 Domain Early Cohort Inclusion Criteria
CORT-E2 Domain Early Domain Exclusion Criteria
CORT-E2 Domain Extended Cohort Inclusion Criteria
CORT-E2 Domain Extended Cohort Exclusion Criteria
FLUDRO Domain Inclusion Criteria 1. Within 72 hours of admission to an ICU
FLUDRO Domain Exclusion Criteria
FAST-3 Domain Inclusion Criteria (must meet all 3 of the following)
a. Invasive mechanical ventilation with FiO2 > 40% b. Non-Invasive Ventilation (> 4 hours consecutively with FiO2 > 40%) defined as: i. CPAP or BiPAP (any settings or interface) ii. HFNC (flow > 40 liter per minute)
FAST-3 Domain Exclusion Criteria
ESCAPE Domain Inclusion Criteria
Patients may be enrolled from the wards or ICU.
Immunocompromised patients include:
ESCAPE Domain Exclusion Criteria
WAVEFORM Domain Inclusion Criteria
WAVEFORM Domain Exclusion Criteria
IMV-ECLS Domain Inclusion Criteria
IMV-ECLS Domain Exclusion Criteria 1. Patients receiving ECLS for the primary intention of extracorporeal CO2 removal 2. Patients expected to be liberated from ECLS within <24 hours 3. History of recent pneumothorax or pneumomediastinum (<3 months at the time of eligibility assessment/randomization) 4. Patients receiving ECLS for the primary intention of bridge to lung transplantation (at the time of eligibility assessment/randomization)
IMPROV Domain Inclusion Criteria
IMPROV Domain Exclusion Criteria
Patients randomized to this intervention group will receive VV-ECMO with the ventilator set to minimize driving pressure and respiratory rate for ultra-protective ventilation.
Patients randomized to LPV will receive standard of care lung-protective ventilation with conventional limits on tidal volume and plateau airway pressure.
Patients randomized to DPL will receive mechanical ventilation set to maintain a safe limit on driving pressure and plateau airway pressure, without less for the tidal volume.
Patients randomized to LDPVS will have ventilation and sedation adjusted to maintain lung-distending pressure and respiratory effort in a safe target range.
Patients randomized to receive corticosteroids will receive dexamethasone 20mg daily for 5 days and then 10mg for an additional 5 days, for a total of 10 days from the time of randomization (or until ICU discharge or death, whichever comes first); after 10 days dexamethasone will be stopped without a taper.
Patients randomized to receive extended corticosteroids will receive dexamethasone 10mg for an additional 10 days. At the end of the additional 10 days (day 20 of corticosteroids), the dexamethasone dose will be halved to 5mg for another 5 days (to reduce the risk of adrenal insufficiency) and then stopped (a total of 25 days or until ICU discharge or death, whichever comes first).
Patients randomized to this arm will be managed according to usual care. They will receive corticosteroids only if prescribed by the clinician.
Corticosteroids will stop after 10 days. Other management will be according to usual care. Patients will receive corticosteroids only if prescribed by the clinician.
Best practice standard of care prescribed by treating team + fludrocortisone 50μg enterally daily for 7 days.
Best practice standard of care prescribed by treating team without fludrocortisone. After randomization, if a clinical indication develops for fludrocortisone as part of standard of care, administration of fludrocortisone is not prohibited. Any fludrocortisone administered to participants in the control arm will be documented.
4 mL of nebulized 0.9% saline minutes every 6 hours over 30 minutes every 6 hours.
40 mg of nebulized furosemide in 4 mL of saline nebulized over 30 minutes every 6 hours
fixed high positive end-expiratory pressure at 20 cmH2O
positive end-expiratory pressure set according to airway opening pressure
fixed lower positive end-expiratory pressure at 10 cmH2O
Patients randomized to this intervention group will receive VV-ECMO where the sedation will be reduced and the ventilator will will be adjusted to facilitate spontaneous breathing.
Patients randomized to EIT will have PEEP titration compared via the Overdistension Collapse Intercept (ODCL) versus that obtained using a standard high PEEP table.
This trial is a prospective, multicenter, observational study (no treatment arm is involved).
Patients will be treated according to usual care.
This trial is a prospective, multicenter, observational study (no treatment arm is involved).
Time frame: 2 years of active site enrollment.
Record total number of patients randomized, total number of patients eligible yet not randomized, and the number of active randomizing sites on a monthly basis. This will include evaluating the validity and appropriateness of inclusion and exclusion criteria, trial acceptability, and reasons for lack of consent or withdrawal.
Time frame: Day 28 post randomization
Ventilator-free days to day 28 is computed as an ordinal scale ranging between -1 to 28. Patients who die in hospital will be assigned a value of -1. Otherwise the endpoint will be computed from the number of days alive and free of ventilation in the period between the day the patient is liberated from mechanical ventilation and day 28.
Time frame: Day 28
Adherence to LDPVS management will be measured in terms of the proportion of protocol-specified measurements of respiratory effort that are on target during the intervention period.
Time frame: Day 28
Lung- and diaphragm-protective targets are defined as an estimated dynamic trans pulmonary driving pressure ≤23 cm H2O and a Pocc value between -6 to -20 cm H2O.
Time frame: Day 9
Protocol adherence will be measured as a binary outcome daily, while patients are receiving EIT. The target protocol adherence across patients is ≥80%.
Time frame: Day 60
Time frame: 18-month enrolment period across three platform trials (PRACTICAL, REMAP-CAP and ATTACC-CAP)
Protocol adherence: e.g., proportion of participants randomized to fludrocortisone who received the study drug as specified in the protocol; Consent rate; Early withdrawal from domain intervention; Outcome completeness
Time frame: Day 28
Advanced respiratory support free days (ARSFDs) to day 28, a composite outcome including mortality and requirement for respiratory support
Time frame: For feasibility of enrollment: 2 years of active site enrollment; For protocol adherence, these will be evaluated at 7 days (once the intervention period ends)
Feasibility of enrollment defined as ≥1 patient enrolled per month per site. Protocol adherence defined as ≥90% of patients initiated on assigned PEEP strategy within 6 hours of ECLS cannulation and ≥90% average protocol adherence across participants.
Time frame: 28-day
Time frame: Throughout trial enrollment for recruitment rate and protocol adherence, and up to day 90 for vital status.
≥0.75 patients randomized per site per month, Protocol adherence defined as > 80% across participants, and ≥89% ascertainment of vital status and days alive and at home at day 90.
Time frame: considering death as a competing event
Duration of mechanical ventilation (MV)
Time frame: 48 hours
Adherence to protocol defined as >80% of patients having <20% of monitored values determined to be major protocol deviations.
Time frame: 2 years
Success for lack of crossovers defined as <10% of crossovers between groups (when not allowed by protocol) in either direction.
Time frame: Until ICU discharge, typically within 28 days
Measured in CORT-E2, IMV, IMV-ECLS and EXPAND-ECLS domains
Time frame: ICU discharge, hospital discharge, day 30, 180 for CORT E2, IMV, IMV ECLS, and EXPAND ECLS.For ESCAPE:hospital mortality @ 60 days and 6 months.For FAST 3:all cause mortality @ 60 days post enrollment.For IMPROV:day 90.For WAVEFORM:day 28 after inclusion
Measured in CORT-E2, ESCAPE, FAST-3, IMV, IMV-ECLS, IMPROV and EXPAND-ECLS and WAVEFORM domains
Time frame: Day 90 and at 6 months
Measured in IMPROV domain
Time frame: Until ICU discharge, typically within 28 days
Measured in FAST-3, IMV, IMV-ECLS and EXPAND-ECLS and WAVEFORM domains
Time frame: Until hospital discharge, assessed up to 4 weeks
Measured in CORT-E2, FAST-3, IMV, IMV-ECLS and WAVEFORM domains
Time frame: For FAST-3: ICU discharge, hospital discharge, Day 28. For IMPROV: Day 90.
Measured in FAST-3, IMPROV domains
Time frame: Until hospital discharge, assessed up to 4 weeks
Measured in IMV, IMV-ECLS, IMPROV domains. Location to which patient is discharged (e.g., home, weaning facility, etc.)
Time frame: Day 90
Measured in IMV, IMV-ECLS and FLUDRO-1 and WAVEFORM domains
Time frame: Until hospital discharge, assessed up to 4 weeks
Measured in IMV, IMV-ECLS domains
Time frame: Until ICU discharge, typically within 28 days
Measured in CORT-E2 domain
Time frame: Until ICU discharge, typically within 28 days
Measured in CORT-E2 domain
Time frame: Until ICU discharge, typically within 28 days
Measured in CORT-E2 domain
Time frame: Until ICU discharge, typically within 28 days
Measured in CORT-E2, IMV-ECLS domains.
Time frame: Until day 30 for CORT-E2, and until day 28 for FAST-3, FLUDRO-1, ULTIMATE and WAVEFORM
Measured in CORT-E2, FAST-3, FLUDRO-1, ULTIMATE and WAVEFORM domains.
Time frame: For CORT-E2, FAST-3, IMV, and IMV-ECLS domains: Day 180; For IMPROV domain: Day 90 and Day 180.
Measured in CORT-E2, FAST-3, IMV, IMV-ECLS, IMPROV, WAVEFORM domains
Time frame: Day 180
Measured in FAST-3 domain
Time frame: Until hospital discharge, assessed up to 4 weeks
Measured in CORT-E2 domain. Hypernatremia, hyperglycemia, delirium, clinically important GI bleeding, nosocomial infection, neuromuscular weakness.
Measured in FLUDRO-1 domain: Hypernatremia, Hyperglycemia, Hypokalemia, Clinically important gastrointestinal bleeding, New nosocomial infection
Time frame: Until ICU discharge, typically within 28 days
Measured in IMV, IMV-ECLS domains
Time frame: Until hospital discharge
Measured in IMPROV domain
Time frame: Until ICU discharge, typically within 28 days
Measured in IMV, IMV-ECLS, IMPROV domains
Time frame: Until ICU discharge, typically within 28 days
Measured in IMV-ECLS domain
Time frame: Daily, for duration of intervention
Measured in IMV, IMV-ECLS domains
Time frame: Daily, for duration of intervention
Measured in IMV, IMV-ECLS domains.
Time frame: Daily, for duration of intervention
Measured in IMV, IMV-ECLS domains.
Time frame: Daily, for duration of intervention
Measured in IMV, IMV-ECLS domains.
Time frame: Daily, for duration of intervention
Measured in IMV, IMV-ECLS domains.
Time frame: Daily, for duration of intervention
Measured in IMV, IMV-ECLS domains.
Time frame: Daily, for duration of intervention
Measured in IMV domain.
Time frame: Daily, for duration of intervention
Measured in IMV domain
Time frame: During first SBT
Measured in IMV domain
Time frame: Until day 28
Measured in EXPAND-ECLS domain
Time frame: Until day 28
Measured in ESCAPE, FLUDRO-1 domains
Time frame: Throughout the trial
Serious adverse events (SAEs) related to the intervention measured in FAST-3 domain
Time frame: Until day 10
Measured in IMV-EIT intervention. Calculated daily up until study day 10 in patients who are alive and continue to have acute hypoxemic respiratory failure requiring invasive mechanical ventilation.
Time frame: Until ICU discharge
Measured in IMPROV domain - final date of extubation or the first day of continuous tracheostomy mask for at least 24 hours, provided ventilator support is not resumed during the index ICU admission.
Time frame: Until 45 days or hospital discharge
Measured in IMPROV domain including pneumothorax, pneumomediastinum, subcutaneous emphysema
Time frame: Until 45 days or hospital discharge
Measured in IMPROV domain
Time frame: Until ICU discharge, typically within 28 days
Measured in IMPROV domain
Time frame: At ICU discharge, Day 90, Day 180
Measured in IMPROV domain
Time frame: At ICU discharge, Day 90, Day 180
Measured in IMPROV domain
Time frame: Day 180
Measured in WAVEFORM domains
Time frame: 7 days
Measured in WAVEFORM domain
Time frame: 7 days, 28 days
Measured in WAVEFORM domain
Time frame: 7 days, 28 days
Measured in WAVEFORM domain
Time frame: Day 180
Measured in WAVEFORM domain
Time frame: Day 180
Measured in WAVEFORM domain
Contact information is provided by the study sponsor or research team.
University Health Network, Toronto
Other
Acronym: PRACTICAL
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