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Sugammadex and Decreased Time to Extubation

Efficacy and Safety of Sugammadex (2mg/kg) to Shorten Time-to-extubation Among Postoperative ICU Patients Following AVR, CABG Surgery, or AVR/CABG Surgery- a Prospective Randomized Placebo-controlled Trial.

Status
Completed
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03196167
Enrollment
90
Registered
2017-06-22
Start date
2017-05-13
Completion date
2020-10-10
Last updated
2022-01-14

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

Conditions

Coronary Artery Bypass Graft and/or Aortic Valve Replacement Surgery

Keywords

sugammadex, extubation, CABG, AVR, CABG/AVR combination

Brief summary

The purpose of this study is to demonstrate faster time to extubation after arrival in the cardiothoracic intensive care unit (ICU) in patients undergoing isolated coronary artery bypass grafting (CABG), AVR and AVR/CABG combination who receive Sugammadex as compared to placebo.

Detailed description

Primary Efficacy Objective: To demonstrate faster time to extubation after arrival in the cardiothoracic ICU in patients having a CABG who receive Sugammadex 2mg/kg as compared to placebo. Hypotheses: We hypothesize that the use of Sugammadex for reversal of residual neuromuscular blockade in adults undergoing CABG, AVR or CABG/AVR combination surgery in the cardiothoracic ICU will significantly decrease the time to extubation. Prolonged intubation after cardiac surgery continues to be a common clinical challenge and is associated with significant risks and costs(1-5). Despite a Class I recommendation by the American College of Cardiology supporting care directed towards early postoperative extubation after low to medium risk Coronary Artery Bypass Grafting (CABG) surgeries (6), a sizable proportion of patients continue to have a prolonged course of cardiothoracic intensive care unit (CTICU) intubation(1). Residual neuromuscular blockade (NMB) continues to be one of the key factors leading to prolonged intubation after cardiac surgery(7). It is also a significant contributor to postoperative pulmonary and respiratory complications including hypoxia, upper airway obstruction; and decreased oxygen saturation - often prompting reintubation in critical care units(8-10). Due to the profound effects that neuromuscular reversal agents other than Sugammadex have when used in combination with muscarinic acetylcholine receptor antagonists on the autonomic nervous system and patient hemodynamics, these traditional reversal drugs are rarely used in the postoperative cardiac surgery patient population (11) as opposed to other general surgical cases. Sugammadex, a gamma-cyclodextrin drug, rapidly reverses neuromuscular blockade by encapsulating the non-depolarizing amino steroids agents(12) and is not associated with cardiovascular effects that are commonly seen with traditional NMB reversal agents(13). It can also reverse NMB more quickly and predictably than existing agents(14). However, there have been sporadic reports of hypotension(15), anaphylaxis(16), elongated a PTT(17) with the use of Sugammadex. Additionally, although the FDA currently lists Sugammadex as indicated for reversal of neuromuscular blockade induced by rocuronium and vecuronium in adults undergoing surgery,(18) its use in the post cardiac surgery setting is limited due to lack of supportive data. In this context, the present study aims to test the effectiveness of a pragmatic and broadly applicable care pathway for shortening time to extubation among patients in the cardiothoracic ICU who have undergone isolated CABG, AVR or CABG/AVR combination procedure. The FDA-approved package insert is attached as an appendix to this application. Study design: Prospective, randomized, double blind, single center placebo-controlled trial. Number of participants: 110 enrolled with assumed randomization of 90 using 1:1 randomization between active ingredient (intervention) and control arms, to be assigned randomly using a computer generated algorithm. Subject Recruitment: Subjects will be consented in the collaborating surgeons offices or in pre-admission testing. Every effort will be made to consent subjects prior to day of surgery. If a patient is referred or identified any time after those visits, they may be consented in the preoperative area. Anesthetic management per protocol:For enrolled patients, anesthetic management will be left to the discretion of the attending anesthesiology provider. As per our usual clinical practice, Rocuronium or vecuronium will be used as the non-depolarizing NMB and that where sedation is desired and appropriate, The patients will be transferred to the CTICU intubated and on a propofol infusion and/or dexmedetomidine per our usual clinical practice. Upon CTICU arrival, determination of continued eligibility will be determined. If the decision is made to continue on a fast-track extubation pathway, eligible patients will be randomized, investigational pharmacy will be contacted for study drug. 30 minutes after the ICU admission, propofol will be discontinued. Precedex may be continued per clinical discretion. The participant will be randomized to either receive Sugammadex or placebo. A qualitative train-of-four measurement will be obtained. The administration of the study and placebo compounds will be performed by CTICU nurses who will receive the drugs in a blinded fashion from the departmental research pharmacy. The level of neuromuscular blockade will be measured by accelerometer before and after the drug/placebo administration by the research coordinator. This will be done by placing a sheet over the limb being tested, so that the clinical team remains blinded to the results of the drug /placebo administration. The study drug will be supplied by Merck. Patients will be initiated on SIMV with 40% FiO2, tidal volumes 8-10 ml/kg and PEEP of 5. Ten minutes after the drug administration, if the patient is able to lift head and remains hemodynamically stable, the patient will be switched to CPAP mode of ventilation for 30 minutes. At the end of the CPAP trial tidal volumes, Rapid Shallow Breathing Index (RSBI) and ABG will be assessed. The patient will be extubated if he/she is not hypoxic/ hypercarbic, has RSBI\<100 and has TV \>300 cc. The final clinical decision to extubate the patients will be taken by the CTICU team. If a patient fails the 30 minute CPAP criteria, the ICU intensivist will be immediately notified. Every attempt will be made to correct the underlying cause of CPAP failure, and a prompt reassessment will be made as deemed appropriate by the intensivist to reattempt CPAP versus continuing controlled mechanical ventilation. It is estimated conservatively that the study personnel will randomize 3 patients per week allowing for data collection to be completed within 1 year of study commencement. Data analysis and dissemination of findings will be conducted over the subsequent 6 months by the study institution investigators per the publication plan below. Blinded analyses of the data will be performed by the study investigators along with the departmental statistician in the Department of Anesthesiology at the Yale School of Medicine. Variables/Time Points of Interest: The primary outcome is the time to extubation, which will be the duration from arrival to the ICU to the extubation time. Participants' blood pressure, heart rate, and chest tube output will be tracked from arrival to the CTICU until extubation per ICU protocol. Statistical Methods:Baseline comparability. We expect that the randomization process will produce reasonably comparable groups. However, the adequacy of the randomization will be assessed by comparing the distribution of baseline demographic and clinical characteristics among the intervention groups. Comparability for continuous variables will be examined graphically and by summary statistics (means, medians, quartiles, etc.). Categorical variables will be examined by calculating frequency distributions. Proposed statistical test/analysis: Positively skewed variables will be log-transformed prior to hypothesis testing. For the primary outcome, a two-sided Student's t-test will be used to compare the time to extubation between the two groups. If necessary, covariate adjustment will be made using the multiple linear regression analysis method. Differences between means and 95% confidence intervals will be estimated to describe the magnitude of intervention difference between the two groups. As part of sensitivity analyses, the time-to-extubation outcome will be also analyzed by the Cox regression model. To compare the categorical adverse events between two groups, chi-square test or Fisher's exact test will be used. Missing Data: Prevention is the most obvious and effective manner to control bias and loss of power from missing data. Therefore, several strategies (e.g., timely data entry and daily missing data report) will be imposed to limit the likelihood that missing data will occur during this study. This protocol will follow the intention to treat principle, requiring follow-up of all subjects randomized regardless of the actual treatment received. Power analysis: Our 'in-house' historical data (n = 73) showed that after excluding outliers greater than the 80th percentile, patients undergoing isolated CABG demonstrated a mean of 8.39 hours to extubation (SD 2.89). Although we anticipate a Hawthorne effect demonstrating reduced time to extubation in both the active and placebo arms of the present study, we have conservatively chosen to maintain power based on historical data. We therefore estimate that 45 subjects per group will give us 90% power to detect a clinically relevant effect size of 2-hours difference between active and placebo groups at an alpha value of 0.05 using a two-sided two-sample t-test. To allow for post consent, pre-randomization study drop out, we will aim to enroll a total of 110 (90 + 20 = 110) subjects. Per-protocol Sensitivity Analysis: In parallel with the primary analysis, if exclusions above occur post randomization but prior to drug administration, the investigators will conduct a parallel per-protocol sensitivity analysis. Drug supplies will be supplied by the sponsor. Adverse Experience Reporting: Throughout the duration of the study, researchers will adhere to good clinical practice and the guidelines of the institution. Patient vitals will be continuously monitored during and after the administration of the test drug. A data and safety monitoring board (DSMB) consisting of the head nurse and a senior critical care staff will meet monthly to discuss any serious events. Any incidence of anaphylaxis or unexplained hypotension requiring initiation of pressors or cardiac pacing within 5 minutes of drug administration will be reported an evaluated. Increases in chest tube output considered clinically significant by the critical care team will be noted. Any of these adverse events will trigger an analysis by the DSMB. If the DSMB determines that study drug may be causing an increase in adverse events, the study will be suspended until the DSMB is able to fully review the events and make a recommendation in consultation with the Yale Human Investigations Committee. The local Merck research representative will also be notified about the events. If the data monitoring board and/or institutional review board (IRB) view that the study is unsafe, the study will be discontinued. Specific Safety Events to Be Reported During Manuscript Preparation: For manuscript preparation, the rates of hypotension, anaphylaxis, and bleeding (i.e. Chest Tube output) will be reported and compared between active and placebo groups.

Interventions

DRUGSugammadex

The administration of the study and placebo compounds will be performed by CTICU nurses who will receive the drugs in a blinded fashion from the departmental research pharmacy.

OTHERPlacebo

The administration of the study and placebo compounds will be performed by CTICU nurses who will receive the drugs in a blinded fashion from the departmental research pharmacy.

Sponsors

Merck Sharp & Dohme LLC
CollaboratorINDUSTRY
Yale University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
SUPPORTIVE_CARE
Masking
QUADRUPLE (Subject, Caregiver, Investigator, Outcomes Assessor)

Masking description

The administration of the study and placebo compounds will be performed by CTICU nurses who will receive the drugs in a blinded fashion from the departmental research pharmacy.

Intervention model description

Patients will be enrolled using 1:1 randomization between active ingredient (intervention) and control arms, to be assigned randomly using a computer generated algorithm.

Eligibility

Sex/Gender
ALL
Age
21 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* All elective ARV, CABG cases, on-pump or off-pump, and CABG/AVR in adult patients with preoperative left ventricular ejection fraction (LVEF) ≥45%.

Exclusion criteria

* Emergency/unplanned cases. * EF\<45% or moderate /severe RV dysfunction. * Estimated GFR \< 30 mL/min. * Patients on supplemental oxygen at baseline (home oxygen). * BMI\>40 (calculated as the patient's weight in kilograms divided by the square of the patient's height in meters). * Patients with chronic opioid use preoperatively. * Patients with known neuromuscular disorders preoperatively. * Patients with a known sensitivity to Rocuronium or to Sugammadex. * Patients with known cognitive deficits preoperatively. Exclusions after recruitment but prior to randomization: * Postoperative Bleeding (chest tube output \>100cc/hr ). * Treatment of anaphylactoid reaction intraoperatively. * Patient's temperature\<35.5 or \>38.3 degree Celsius at the time of ICU arrival. * Determination that the patient will require prolonged mechanical ventilation possibly requiring muscle relaxation based on the intraoperative course and clinical judgment of the study PI or collaborating intensivists. * Intraoperative hypoxia or on arrival to the ICU. (Please see Study Flowchart). * Cardiac arrest. * Sudden arrhythmia (Ventricular tachycardia runs/sudden bradycardia with improper pacemaker detection/function) precluding fast-track extubation protocol. * Need for inotrope initiation precluding fast-track protocol. * Postoperative ST changes.

Design outcomes

Primary

MeasureTime frameDescription
Time to ExtubationUp to 2 weeksThe primary outcome of this study aims to test the time to extubation among patients in the cardiothoracic ICU who have undergone isolated CABG.

Secondary

MeasureTime frameDescription
RSBIUpto 2 weeksRapid Shallow Breathing Index
Length of ICU StayUp to 2 weeksDays in the ICU post opertaitvely
Length of Hospital Stay2 weeksLength of Hospital stay after surgery
Negative Inspiratory ForceUp to 2 weeksNIF=Negative Inspiratory Force
Change in Renal FunctionUp to 2 weeksChange in renal function was defined as Creatinine elevation \>0.5 mg/dl
Postoperative CHFUp to 2 weeksPostoperative congestive heart failure
New DysrhythmiaUp to 2 weeksAny dysrhythmia after surgery in patients without history of dysrhythmia

Countries

United States

Participant flow

Pre-assignment details

Patients undergoing AVR, CABG or both were screened meeting preoperative inclusion criteria. Per the study design, elements of exclusion criteria incorporated intraoperative events. Patients were consented prior to the operation room with the understanding that they might be excluded depending on events in the operating room. Patients who screened and consented but did not participate in the study were not considered enrolled. A total of 90 participants were enrolled.

Participants by arm

ArmCount
Sugammadex
Research pharmacy will provide the Sugammadex (2m/kg) vs. Placebo in a syringe. Sugammadex: The administration of the study and placebo compounds will be performed by CTICU nurses who will receive the drugs in a blinded fashion from the departmental research pharmacy.
45
Placebo
Research pharmacy will provide the Sugammadex (2m/kg) vs. Placebo in a syringe. Placebo: The administration of the study and placebo compounds will be performed by CTICU nurses who will receive the drugs in a blinded fashion from the departmental research pharmacy.
45
Total90

Baseline characteristics

CharacteristicTotalPlaceboSugammadex
Age, Continuous67.0 years66.0 years67.0 years
ASA Class
</= 3
27 Participants13 Participants14 Participants
ASA Class
4 or 5
63 Participants32 Participants31 Participants
BMI29.47 kg/m^2
STANDARD_DEVIATION 4.7
29.55 kg/m^2
STANDARD_DEVIATION 4.61
29.39 kg/m^2
STANDARD_DEVIATION 4.83
Coexisting Medical Conditions
COPD
2 Participants1 Participants1 Participants
Coexisting Medical Conditions
Hypertension
69 Participants32 Participants37 Participants
Coexisting Medical Conditions
TIA/ Stroke
3 Participants1 Participants2 Participants
Creatinine1 mg/dL.9 mg/dL1.0 mg/dL
Ethnicity (NIH/OMB)
Hispanic or Latino
0 Participants0 Participants0 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
89 Participants45 Participants44 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
1 Participants0 Participants1 Participants
FFP (units)
0
86 Participants42 Participants44 Participants
FFP (units)
1
2 Participants1 Participants1 Participants
FFP (units)
2
2 Participants2 Participants0 Participants
HBA1c6.6 percentage of HbA1c6.2 percentage of HbA1c6.9 percentage of HbA1c
Intraoperative Anesthetic: Midazolam7.0 mg7.0 mg7.0 mg
Intraoperative Anesthetic: Propofol196.0 mg185.0 mg204.0 mg
Intraoperative Anesthetic: Rocuronium150.0 mg150.0 mg150.0 mg
Intraoperative Fluids
Intraoperative colloids
0.0 ml0.0 ml0.0 ml
Intraoperative Fluids
Intraoperative crystalloids
1900.0 ml1900.0 ml1950.0 ml
Intraoperative opioids
Total intraoperative Fentanyl
250.0 mcg150.0 mcg400.0 mcg
Intraoperative opioids
Total intraoperative Sufentanyl
231.8 mcg250.5 mcg145.6 mcg
Intraoperative Tidal volume5.3 (ml/kg)5.7 (ml/kg)5.3 (ml/kg)
PaO2/FiO2 ratio220.0 ratio210.0 ratio224.6 ratio
Platelets (units)
0
69 Participants35 Participants34 Participants
Platelets (units)
1
21 Participants10 Participants11 Participants
Preoperative Medications
Angiotensin-converting enzyme inhibitors or Angiotensin II receptor blockers
53 Participants23 Participants30 Participants
Preoperative Medications
Aspirin
70 Participants33 Participants37 Participants
Preoperative Medications
Beta blockers
56 Participants23 Participants33 Participants
Preoperative Medications
Other antihyperlipidemics
12 Participants5 Participants7 Participants
Preoperative Medications
Plavix
4 Participants2 Participants2 Participants
Preoperative Medications
Statins
71 Participants31 Participants40 Participants
Pre-op Hemoglobin (g/dL)14.2 g/dL14.6 g/dL13.9 g/dL
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
1 Participants0 Participants1 Participants
Race (NIH/OMB)
Black or African American
5 Participants2 Participants3 Participants
Race (NIH/OMB)
More than one race
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
2 Participants2 Participants0 Participants
Race (NIH/OMB)
White
82 Participants41 Participants41 Participants
RBCs (Units)
0
87 Participants44 Participants43 Participants
RBCs (Units)
1
2 Participants1 Participants1 Participants
RBCs (Units)
3
1 Participants0 Participants1 Participants
Sex: Female, Male
Female
13 Participants5 Participants8 Participants
Sex: Female, Male
Male
77 Participants40 Participants37 Participants
Smoking
Current
15 Participants8 Participants7 Participants
Smoking
Never
40 Participants19 Participants21 Participants
Smoking
Prior
35 Participants18 Participants17 Participants
STS Surgery Risk Score1.46 %
STANDARD_DEVIATION 0.68
1.34 %
STANDARD_DEVIATION 0.49
1.58 %
STANDARD_DEVIATION 0.8
Surgical Factors: Characteristics
Off Pump surgery
1 Participants0 Participants1 Participants
Surgical Factors: Characteristics
Redo sternotomy
1 Participants1 Participants0 Participants
Surgical Factors (Time)
Cardiopulmonary Bypass time
86.0 Minutes85.0 Minutes89.2 Minutes
Surgical Factors (Time)
Cross clamp time
66.0 Minutes63.6 Minutes68.7 Minutes
Type of Surgery
AVR
13 Participants8 Participants5 Participants
Type of Surgery
CABG
68 Participants34 Participants34 Participants
Type of Surgery
CABG plus AVR
9 Participants3 Participants6 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 450 / 45
other
Total, other adverse events
8 / 459 / 45
serious
Total, serious adverse events
0 / 450 / 45

Outcome results

Primary

Time to Extubation

The primary outcome of this study aims to test the time to extubation among patients in the cardiothoracic ICU who have undergone isolated CABG.

Time frame: Up to 2 weeks

Population: Of the 90 patients that were included in the study (45 in each group), a total of 68 patients underwent CABG, 13 AVR and 9 combined AVR and CABG.

ArmMeasureValue (MEDIAN)
SugammadexTime to Extubation126.0 minutes
PlaceboTime to Extubation219.0 minutes
Secondary

Change in Renal Function

Change in renal function was defined as Creatinine elevation \>0.5 mg/dl

Time frame: Up to 2 weeks

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
SugammadexChange in Renal Function5 Participants
PlaceboChange in Renal Function3 Participants
Secondary

Length of Hospital Stay

Length of Hospital stay after surgery

Time frame: 2 weeks

ArmMeasureValue (MEDIAN)
SugammadexLength of Hospital Stay5 Days
PlaceboLength of Hospital Stay5 Days
Secondary

Length of ICU Stay

Days in the ICU post opertaitvely

Time frame: Up to 2 weeks

ArmMeasureValue (MEDIAN)
SugammadexLength of ICU Stay2 days
PlaceboLength of ICU Stay2 days
Secondary

Negative Inspiratory Force

NIF=Negative Inspiratory Force

Time frame: Up to 2 weeks

ArmMeasureValue (MEDIAN)
SugammadexNegative Inspiratory Force-33.0 cm per H2O
PlaceboNegative Inspiratory Force-31.0 cm per H2O
Secondary

New Dysrhythmia

Any dysrhythmia after surgery in patients without history of dysrhythmia

Time frame: Up to 2 weeks

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
SugammadexNew Dysrhythmia3 Participants
PlaceboNew Dysrhythmia6 Participants
Secondary

Postoperative CHF

Postoperative congestive heart failure

Time frame: Up to 2 weeks

Population: There was not statistically significant difference between the 2 groups. (p=1.0)

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
SugammadexPostoperative CHF0 Participants
PlaceboPostoperative CHF1 Participants
Secondary

RSBI

Rapid Shallow Breathing Index

Time frame: Upto 2 weeks

ArmMeasureValue (MEDIAN)
SugammadexRSBI40.0 breaths/min/L
PlaceboRSBI32.7 breaths/min/L

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