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Recruiting NCT04545424

Trial of Therapeutic Hypothermia in Patients With ARDS

Phase II Interventional Respiratory Distress Syndrome, Adult

For patients and families

In plain language

An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.

What is being studied
The protocol lists: Hypothermia, Neuromuscular Blocking Agents, Standard of care.
Who it may be relevant to
Registry conditions: Respiratory Distress Syndrome, Adult. Basic parameters: 18 years — 85 years · All.
What needs checking
Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
Where it takes place
United States
Next step
Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
Official title

Cooling to Help Injured Lungs (CHILL) Phase IIB Randomized Control Trial of Therapeutic Hypothermia in Patients With ARDS

Overview

Acute Respiratory Distress Syndrome (ARDS) is a serious condition that occurs as a complication of medical and surgical diseases, has a mortality of \~40%, and has no known treatment other than optimization of support. Data from basic research, animal models, and retrospective studies, case series, and small prospective studies suggest that therapeutic hypothermia (TH) similar to that used for cardiac arrest may be lung protective in patients with ARDS; however, shivering is a major complication of TH, often requiring paralysis with neuromuscular blocking agents (NMBA) to control. Since the recently completed NHLBI PETAL ROSE trial showed that NMBA had no effect (good or bad) in patients with moderate to severe ARDS, the CHILL trial is designed to evaluate whether TH combined with NMBA is beneficial in patients with ARDS. This Phase IIb randomized clinical trial is funded by the Department of Defense to compare TH (core temperature 34-35°C) + NMBA for 48h vs. usual temperature management in patients in 14 clinical centers with the Clinical Coordination Center and Data Coordinating Center at University of Maryland Baltimore. Planned enrollment is 340 over \~3.5 years of the 4-year contract. COVID-19 is considered an ARDS risk-factor and patients with ARDS secondary to COVID-19 pneumonia will be eligible for enrollment. Primary outcome is 28-day ventilator-free days. Secondary outcomes include safety, physiologic measures, mortality, hospital and ICU length of stay, and serum biomarkers collected at baseline and on days 1, 2, 3, 4, and 7.

Detailed description

Brief summary:

Acute Respiratory Distress Syndrome (ARDS) is a serious condition that occurs as a complication of medical and surgical diseases, has a mortality of \~40%, and has no known treatment other than optimization of support. Data from basic research, animal models, and retrospective studies, case series, and small prospective studies suggest that therapeutic hypothermia (TH) similar to that used for cardiac arrest may be lung protective in patients with ARDS; however, shivering is a major complication of TH, often requiring paralysis with neuromuscular blocking agents (NMBA) to control. Since the recently completed NHLBI PETAL ROSE trial showed that NMBA had no effect (good or bad) in patients with moderate to severe ARDS, the CHILL trial is designed to evaluate whether TH combined with NMBA is beneficial in patients with ARDS. This Phase IIb randomized clinical trial is funded by the Department of Defense to compare TH (core temperature 34-35°C) + NMBA for 48h vs. usual temperature management in patients in 14 clinical centers with the Clinical Coordination Center and Data Coordinating Center at University of Maryland Baltimore. Planned enrollment is 340 over \~3.5 years of the 4-year contract. COVID-19 is considered an ARDS risk-factor and patients with ARDS secondary to COVID-19 pneumonia will be eligible for enrollment. Primary outcome is 28-day ventilator-free days. Secondary outcomes include safety, physiologic measures, mortality, hospital and ICU length of stay, and serum biomarkers collected at baseline and on days 1, 2, 3, 4, and 7.

Background:

Despite recent advances in supportive care for patients with acute respiratory distress syndrome (ARDS), mortality remains \>40%. Fever worsens and hypothermia mitigates animal models of ALI and in small non-randomized in patients with ARDS. Since hypothermia reduces oxygen utilization as long as shivering is blocked, TH may reduce injury in part by allowing lower levels of assisted ventilation. TH likely exerts additional lung protective effects by directly modifying temperature-dependent cellular processes in endothelium, epithelium, and leukocytes. Neuromuscular blockade (NMB) is the ultimate treatment to block shivering and is frequently used in patients with ARDS to facilitate ventilator management. Since the recently completed NHLBI PETAL ROSE trial showed that NMB caused conferred neither benefit nor harm in patients with moderate to severe ARDS, the investigators have bundled TH with NMB to reduce shivering. An open-label study of 8 ARDS patients showed that studying TH + NMB in patients with moderate to severe ARDS was feasible. Moreover, the patients treated with TH +NMB had more 28-day ventilator-free days (VFDs), ICU-free days (ICU-FDs) and greater hospital survival (75% vs. 25%; p = 0.027) than historical controls with ARDS and NMB but without TH. Within the limits of historical comparisons, these results support further study of TH in ARDS. Since COVID-19 is currently the most common cause of ARDS and will likely remain so for much of the CHILL enrollment period, patients with ARDS secondary to COVID-19 pneumonia are eligible for enrollment in CHILL. Our overall hypothesis is that TH is lung protective in ARDS. The hypothesis to be tested is that induced hypothermia (core temperature 34°-35°C) with NMB to prevent shivering is safe and beneficial in patients with moderate to severe ARDS (PaO2/FIO2 (P/F) ratio≤200) who are receiving NMB.

Focus of Study: We will conduct a multicenter RCT pilot of TH+NMB for 48h vs. usual temperature management in 340 patients with ARDS in 14 clinical sites.

Primary and secondary objectives: The primary objective is to assess the efficacy and safety of 48h TH+NMB in patients with ARDS compared with a control arm receiving usual temperature management. Secondary objectives include: (1) generating data to inform a decision about whether to proceed with a subsequent civilian population Phase III clinical trial of TH to reduce mortality in ARDS and to direct its study design; (2) analyzing biomarker and physiologic data to determine the mechanism(s) through which TH+NMB might exert benefit in ARDS

Study design: The CHILL trial is a multi-center RCT.

Intervention: The study intervention is TH to core temperature 34°-35°C + NMB for 48h. Patients in the TH+NMB arm will receive deep sedation, treatment with a neuromuscular blocking agent, and mechanical ventilation for at least 48h. Decisions about transition to unassisted breathing and extubation will be based on criteria in the CHILL study protocol.

TH+NMB: Once sedation and NMB are confirmed, TH to 34°-35°C will be initiated using surface cooling. Temperature will be measured from a central probe. Once target temperature is reached, TH will be maintained for 48h. Patients will then be rewarmed to 35.5°C by 0.3°C/h and the cooling devices removed. Post-TH fever suppression is not part of the CHILL protocol and will be performed at the discretion of the primary ICU team. TH+NMB will be aborted for persistent severe bradycardia with hypotension, uncontrolled bleeding, and intractable arrhythmias.

Usual temperature management: Patients will receive light sedation (RASS 0 to -1). During the 54h post-randomization treatment period, acetaminophen will be given for core temperature \>38°C and surface cooling will be initiated if core temperature remains \>38°C within ≥45 minutes of receiving acetaminophen and adjusted to maintain core temperature ≤38°C. If core temperature ≤36°C, patients in this arm will receive surface warming to core temperature 37°C. Following the 54h treatment period, temperature will be managed at the discretion of the primary ICU team.

Concomitant Treatment: Proning and corticosteroid therapy is allowed.

Primary and Secondary Endpoints:

Primary endpoint: 28-day Ventilator-free days (VFDs). Decisions about ventilator weaning and extubation will be made based on criteria in the CHILL protocol. The 28-day VFDs will be calculated at day 28.

Intermediate endpoint: The low and high core temperatures in each 2-hour period will be recorded for each of the first four study days. The time required to reach the target temperature and the percent of readings within the target range in the TH+NMB arm will be determined.

Secondary endpoints:

Clinical: (a) 28-day ICU-FDs: The 28-day ICU-FDs will be calculated at day 28; (b) baseline and day 1, 2, 3, 4, and 7 non-neurologic SOFA score; (c) Glasgow coma score at hospital discharge; (d) 60- and 90-day survival; (e) 60- and 90-day functional status.

Physiologic: (a) day-3 and -7 driving pressure; (b) day-3 and day-7 oxygen saturation index (OSI).

Plasma Biomarker: Day 0, 1, 2, 3, 4, and 7 plasma will be collected and analyzed in the University of Maryland Cytokine Core Lab using in-house ELISAs (IL-1ß, IL-6, IL-8, IL-18, and sTNFR1) or ELISA kits purchased from R\&D Systems (sRAGE, SP-D, sICAM-1, MMP8) and Helena Laboratories (Protein C).

Safety:

1. For the first 54h: (a) continuous cardiac monitoring for bradycardia with associated hypotension requiring i.v. fluid or vasopressors; (b) every 6h blood glucose measurement; (c) every 12 h potassium, magnesium and phosphate; (d) significant bleeding event (requiring ≥3u packed red blood cells or surgical or interventional radiologic intervention) 2. For the first 7 days: (a) Ventilator-associated pneumonia (VAP); (b) other secondary infections; (c) monitor for SAEs

Schedule of Clinical and Laboratory Evaluations:

1. Definitions:

a. Baseline period: 24h prior to randomization b. Comprehensive metabolic panel (CMP): includes basic electrolytes, BUN, creatinine, ALT, AST, alkaline phosphatase, bilirubin, calcium, magnesium, phosphate, C-reactive protein (CRP) c. CBC: complete blood count d. Driving Pressure = Plateau Pressure - PEEP with patient NOT making inspiratory effort (on NMB or post-NMB and observed RR at set ventilator rate) e. OSI = Mean airway pressure x 100 x FIO2/SpO2 2. Clinical and Research laboratory testing: Two purple/pink top tubes (EDTA; 12 ml blood total) will be collected for biomarker analysis just prior to randomization and as close to 0800 as possible on study days 1, 2, 3, 4, and 7 . Clinical laboratory testing required for secondary clinical outcomes at baseline and on study days 1, 2, 3, 4, and will be performed as part of usual clinical care whenever possible). 3. Day -7 to 0 (Screening and enrollment): To facilitate randomization within the inclusion window, we will consent and enroll based on partial fulfillment of randomization criteria and randomize once all criteria are met. Patients between 18 and 75 years old receiving mechanical ventilation for ≤7 days will be screened and those who have bilateral pulmonary opacities not fully explained by pleural effusions, atelectasis, or hydrostatic pulmonary edema and a qualifying P/F ratio (P/F ≤200 with PEEP ≥8) for \<72h will be enrolled and randomized. Patients who meet the criteria for pulmonary opacities but have not yet had a qualifying P/F ratio may be enrolled and monitored for potential randomization.

1. Pregnancy testing in women of child-bearing years 2. Obtain informed consent from patient or Legally Authorized Representative (LAR) depending on capacity 3. Complete the screening and enrollment portion of the Screening, Enrollment and Randomization CRF. 4. Enter data into the Medidata CHILL database, which will assign a unique subject ID. 5. The subject ID and patient identifiers are entered into a secure screening log.

3\. Randomization:

1. If the patient has had a qualifying P/F ratio at the time of enrollment, proceed with randomization, otherwise follow until the patient has a qualifying P/F ratio, exits the 48h NMBA window or the 7 day mechanical ventilation window, or develops an exclusion. 2. Once patient meets criterion for randomization:

i. Obtain baseline plasma for research testing. If \>24h since last CBC and CMP, send new samples to lab.

ii. Obtain treatment assignment from the automated, web-based randomization service provided by Cooperative Studies Program Coordinating Center (CSPCC).

iii. If patient does not have a central temperature probe, place esophageal probe.

iv. For TH+NMB arm, confirm adequate sedation (RASS -4 to -5) and NMBA(Train of four ≤2 twitch) and initiate TH protocol using surface cooling as soon as possible.

v. Complete the randomization section of the Screening, Enrollment, and Randomization CRF vi. Complete Baseline CRF

4.Day 1-4:

1. Fill out Daily CRFs and enter into Medidata database 2. Collect plasma for research testing. 3. Measure Driving Pressure and OSI 4. Make sure CBC and CMP sent every morning and a subsequent BMP, magnesium, and phosphate sent \~12h later. 5. Rewarming starts 48h after initially reaching target temperature (34°-35°C) on day 3 6. Complete Unassisted Breathing Checklist form if applicable 7. Assess for adverse events

5\. Days 5-6:

a. Follow for ventilator status, ICU status, survival, SAEs b. Complete Unassisted Breathing Checklist form if applicable c. Assess for adverse events

6\. Day 7:

1. Fill out Day 7 CRF and enter into Medidata database 2. Collect plasma for research testing. 3. Measure Driving Pressure and OSI 4. Make sure CBC are CMP sent 5. Complete Unassisted Breathing Checklist form if applicable 6. Assess for adverse events

7\. Day 8-27:

a. Follow for ventilator status, ICU status, survival, SAEs b. Complete Unassisted Breathing Checklist form if applicable

8\. Day 28:

Interventions

  • Device Hypothermia
    Subjects will be cooled using either cooling blankets or gel-pad systems to maintain core temperature 34-35°C.
  • Drug Neuromuscular Blocking Agents
    Subjects in the TH + NMB arm will be deeply sedated using agents at the discretion of the primary ICU team, then start continuous iv infusion of either cisatracurium, atracurium, or vecuronium titrated to 2 twitches on train of four monitoring and further titrated to ablate visible shivering.
  • Device Standard of care
    Subjects who are hypothermic (≤36°C) during CRRT will receive surface warming to restore core temperature to 37°C. Patients with core temperature \>38°C will receive 650 mg acetaminophen and, if temperature remains \>38°C, surface cooling will be initiated to return core temperature to 37-38°C.

Primary outcome measures

  • 28-day ventilator-free days (VFDs) [Time frame: Calculated at study day 28 or death (whichever occurs first)]
Secondary outcome measures (12)
  • 28-day ICU-free days [Time frame: Calculated at study day 28 or death (whichever occurs first)]
  • Survival [Time frame: calculated at 28, 60, and 90 days]
  • non neurologic Sequential Organ Failure (SOFA) scores [Time frame: At enrollment and study days 1, 2, 3, 4, 7, and 28]
  • Oxygen saturation (SpO2) [Time frame: Measured at enrollment, every 2 hours on enrollment day, then once on day 2, 3, 4, 7 and 28]
  • Plateau airway pressure [Time frame: Measured at randomization and daily as close to 0800 as possible on study days 1 2, 3, 4, and 7 or until extubation whichever occurs first]
  • Mean airway pressure [Time frame: Measured at randomization and daily as close to 0800 as possible on study days 1 2, 3, 4, and 7 or until extubation whichever occurs first]
  • Airway driving pressure [Time frame: Measured at randomization and daily as close to 0800 as possible on study days 1 2, 3, 4, and 7 or until extubation whichever occurs first]
  • Oxygen saturation index [Time frame: Measured at randomization and daily as close to 0800 as possible on study days 1 2, 3, 4, and 7 or until extubation whichever occurs first]
  • Core temperature [Time frame: Measured continuously and recorded at randomization and then every 2 hours through study day 4]
  • Urine output [Time frame: Daily on study day 1, 2, 3, 4, and 7]
  • comprehensive metabolic panel blood test (includes sodium, potassium, chloride, bicarb, BUN, creatinine, glucose, albumin, total protein, AST, SLT, alkaline phosphatase, and bilirubin) [Time frame: At randomization and each morning on study days 1, 2, 3, 4, and 7]
  • Complete blood count with differential count and platelet count [Time frame: At randomization and each morning on study days 1, 2, 3, 4, and 7]

Eligibility criteria

Inclusion criteria

  • endotracheal tube or tracheostomy in place and mechanically ventilated for ≤7 days;
  • admitted to a participating ICU
  • radiologic evidence of bilateral pulmonary infiltrates not fully explained by pleural effusions, atelectasis, or hydrostatic pulmonary edema
  • P/F ratio ≤200 with PEEP ≥8 cm H2O; If ABG values are not available, the P/F ratio may be inferred from SpO2 values based on Table 3 from Brown et al as long as following conditions are met:
  • SpO2 values are 80-96%
  • SpO2 is measured ≥10 min after any change in FIO2
  • PEEP is ≥ 8 cm H2O
  • the pulse oximeter waveform tracing is adequate
  • the qualifying inferred P/F ratio is confirmed 1-6h after initial determination.
  • access to an LAR to provide consent.
  • Criteria 3 AND 4 must be met within 72h of enrollment and randomization, not be fully explained by hydrostatic pulmonary edema, and must have occurred within 7 days of exposure to an ARDS-risk factor (including continuous exposure to persistent processes (e.g. sepsis, pneumonia, COVID-19).
  • Patients may be enrolled and decision about randomization delayed if all criteria other than P/F ratio ≤ 200 are met and then randomized if and when the P/F ratio ≤200 (as long as this occurs within 72h of randomization). Patients on high flow nasal oxygen or non-invasive pressure ventilation may be consented if they meet criteria for starting the 72h ARDS window but may not be enrolled and randomized until they are intubated.

Exclusion criteria

  • Missed moderate-severe ARDS window (>72hrs) - Window starts when patient is intubated with a qualifying P/F ratio of ≤ 200 with PEEP ≥ 8 cm H2O or on high flow nasal oxygen with well-fitting nasal cannula with flow ≥ 40 LPM and FiO2 ≥ 0.65 or on non-invasive pressure ventilation with PEEP ≥ 8 cm H2O and FiO2 ≥ 0.6.
  • Missed NMB window: (>48 hrs)
  • Missed mechanical ventilation window (>7 days)
  • Refractory hypotension (continuous infusion of >0.3 mcg/kg/min of norepinephrine or equivalent dose of other vasopressors within 2 hours prior to randomization)
  • Core temperature <35°C for ≥6 hours while not receiving CRRT on day of randomization
  • Significant, active bleeding (>3u blood products and/or surgical/IR intervention) on day of randomization
  • Platelets <10K/mm3 (uncorrected) on day of randomization
  • Active hematologic malignancy and not expected to survive 6 months
  • Skin process that precludes cooling device
  • Moribund, not likely to survive 72h
  • Pre-morbid condition makes it unlikely that patient will survive 28 days
  • Do Not Resuscitate status at time of randomization (excluding patients receiving full support EXCEPT CPR for cardiac arrest)
  • Not likely to remain intubated for ≥48h
  • Physician of record unwilling to participate
  • Severe underlying lung disease
  • Needs > 2 LPM or >28% continuous home O2 (adjusted for altitude)
  • On BIPAP (except for OSA)
  • Prior lung transplantation
  • Pregnant at time of randomization
  • BMI consistently >50 kg/m2
  • Known NYHA class IV heart disease
  • Acute Coronary Syndrome (MI, unstable angina) within 30 days of randomization
  • Cardiac arrest within 30 days of randomization with sequelae likely to increase mortality and/or time to ventilator liberation.
  • Burns over >20% of the body surface
  • Severe chronic liver disease (Child-Pugh score 12-15)
  • Previously randomized in CHILL study
  • Simultaneous enrollment in another inpatient interventional trial started during the current hospitalization.
  • On ECMO during the current hospitalization.

Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.

Healthy volunteers: No

Study design

Allocation
Randomized
Model
Parallel assignment
Masking
Open label
Primary purpose
Treatment

Study locations

United States · 19 centers
  • Cedars-Sinai Medical Center — Los Angeles
  • Yale University — New Haven
  • Emory University — Atlanta
  • Rush University Medical Center — Chicago
  • Loyola University Chicago — Chicago
  • University of Kentucky — Lexington
  • University of Maryland Medical Center — Baltimore
  • Johns Hopkins Hospital — Baltimore
  • … and 11 more centers

Publications

  • Shanholtz CB, Terrin ML, Harrington T, Chan C, Warren W, Walter R, Armstrong F, Marshall J, Scheraga R, Duggal A, Formanek P, Baram M, Afshar M, Marchetti N, Singla S, Reilly J, Knox D, Puri N, Chung K, Brown CH, Hasday JD. Design and rationale of the CHILL phase II trial of hypothermia and neuromuscular blockade for acute respiratory distress syndrome. Contemp Clin Trials Commun. 2023 Jun;33:1011 PMID 37228902
  • Acute Respiratory Distress Syndrome Network; Brower RG, Matthay MA, Morris A, Schoenfeld D, Thompson BT, Wheeler A. Ventilation with lower tidal volumes as compared with traditional tidal volumes for acute lung injury and the acute respiratory distress syndrome. N Engl J Med. 2000 May 4;342(18):1301-8. doi: 10.1056/NEJM200005043421801. PMID 10793162
  • Papazian L, Forel JM, Gacouin A, Penot-Ragon C, Perrin G, Loundou A, Jaber S, Arnal JM, Perez D, Seghboyan JM, Constantin JM, Courant P, Lefrant JY, Guerin C, Prat G, Morange S, Roch A; ACURASYS Study Investigators. Neuromuscular blockers in early acute respiratory distress syndrome. N Engl J Med. 2010 Sep 16;363(12):1107-16. doi: 10.1056/NEJMoa1005372. PMID 20843245
  • National Heart, Lung, and Blood Institute PETAL Clinical Trials Network; Moss M, Huang DT, Brower RG, Ferguson ND, Ginde AA, Gong MN, Grissom CK, Gundel S, Hayden D, Hite RD, Hou PC, Hough CL, Iwashyna TJ, Khan A, Liu KD, Talmor D, Thompson BT, Ulysse CA, Yealy DM, Angus DC. Early Neuromuscular Blockade in the Acute Respiratory Distress Syndrome. N Engl J Med. 2019 May 23;380(21):1997-2008. doi: 1 PMID 31112383
  • Guerin C, Reignier J, Richard JC, Beuret P, Gacouin A, Boulain T, Mercier E, Badet M, Mercat A, Baudin O, Clavel M, Chatellier D, Jaber S, Rosselli S, Mancebo J, Sirodot M, Hilbert G, Bengler C, Richecoeur J, Gainnier M, Bayle F, Bourdin G, Leray V, Girard R, Baboi L, Ayzac L; PROSEVA Study Group. Prone positioning in severe acute respiratory distress syndrome. N Engl J Med. 2013 Jun 6;368(23):215 PMID 23688302
  • Villar J, Blanco J, Kacmarek RM. Current incidence and outcome of the acute respiratory distress syndrome. Curr Opin Crit Care. 2016 Feb;22(1):1-6. doi: 10.1097/MCC.0000000000000266. PMID 26645551
  • Hasday JD, Garrison A, Singh IS, Standiford T, Ellis GS, Rao S, He JR, Rice P, Frank M, Goldblum SE, Viscardi RM. Febrile-range hyperthermia augments pulmonary neutrophil recruitment and amplifies pulmonary oxygen toxicity. Am J Pathol. 2003 Jun;162(6):2005-17. doi: 10.1016/S0002-9440(10)64333-7. PMID 12759256
  • Lipke AB, Matute-Bello G, Herrero R, Kurahashi K, Wong VA, Mongovin SM, Martin TR. Febrile-range hyperthermia augments lipopolysaccharide-induced lung injury by a mechanism of enhanced alveolar epithelial apoptosis. J Immunol. 2010 Apr 1;184(7):3801-13. doi: 10.4049/jimmunol.0903191. Epub 2010 Mar 3. PMID 20200273

Identifiers

NCT: NCT04545424 · W81XWH2010432

Primary sources (government registries)

View this study on ClinicalTrials.gov ↗