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Erythropoetin Neuroprotection for Neonatal Cardiac Surgery

Erythropoetin Neuroprotection for Neonatal Cardiac Surgery

Status
Completed
Phases
Phase 1Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00513240
Enrollment
62
Registered
2007-08-08
Start date
2006-09-30
Completion date
2015-09-30
Last updated
2020-02-07

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

Conditions

Aortic Arch Hypoplasia or Interruption, Congenital Heart Disease, Hypoplastic Left Heart Syndrome, Transposition of the Great Arteries

Keywords

erythropoetin, neuroprotection, neonate, cardiac, magnetic resonance imaging, brain magnetic resonance imaging, electroencephalogram

Brief summary

Brain problems occur in neonatal open heart surgery with a frequency of 20-70%, seen on neurological examination, brain imaging such as magnetic resonance imaging (MRI), or long term development problems such as learning disorders and hyperactivity syndromes. This study aims to determine if erythropoetin, a natural hormone made in the body, protects the brain from damage when given in high doses before and during neonatal open heart surgery. We will use brain MRI, brain wave tests (EEG), neurological examination, and long term developmental outcome testing to see if erythropoetin is better than salt water injection (placebo) in protecting the brain.

Detailed description

Hypothesis: Erythropoetin (EPO) will protect the neonatal brain in the perioperative period for congenital heart surgery. Using a prospective, randomized, placebo-controlled, double-blinded design, the specific aims of this study are: 1. To determine the effect of perioperative EPO on short and long term neurological outcomes in neonates undergoing cardiac surgery with an optimized cardiopulmonary bypass strategy. 2. To determine EPO tolerability and safety with short term administration. 3. To determine EPO pharmacokinetics in this population. 4. To determine the relationship of neurological monitoring, specifically NIRS, to neurological outcomes with an optimized cardiopulmonary bypass technique in neonates that avoids deep hypothermic circulatory arrest, and to determine if EPO affects this relationship. Protocol: Neonates undergoing arterial switch, Norwood, or aortic arch advancement/other complete 2 ventricle repair, \>35 weeks gestation and ≥2.0 kg are eligible. Preop day 1:NIRS for 12-24 hours, neuro exam, and Study drug dose #1: EPO 500 units/kg or saline placebo 12-72 hours before surgery. EPO Pharmacokinetic data for 25-50 consenting patients. Day of surgery: Brain MRI immediately preop. Anesthesia/CPB per our standard practice (fentanyl 100-200 mcg/kg, midazolam, isoflurane, epsilon-aminocaproic acid, 75 mg/kg IV load to patient and CPB prime, and 75 mg/kg/hr infusion in OR) with ACP guided by TCD, pH stat, hct 30-35, avoid DHCA. POD #1: Study drug dose #2: EPO 500 units/kg or saline placebo 24 hours after dose #2. For 72 hours postop, NIRS monitoring. All monitor data collected electronically. POD #3: Study drug dose #3: EPO 500 units/kg or saline placebo 48 hours after dose #3. 7 days postop: Brain MRI. (pentobarbital IV). Neuro exam before discharge. 3-6 months: Brain MRI immediately before or after 2nd surgery, or as outpatient (IV pentobarb or propofol/midazolam-may use N2O/sevo for induction, cannot intubate if outpatient; OR if cardiac MRI at same time, any indicated anesthetic technique). NIRS x 24h after 2nd surgery. 1,and 3 years: Bayley Scales of Infant Development III. 5 years: Battery of neurodevelopmental tests. Early primary outcome variable: MRI severity of injury score (decrease by 25%). Late outcome variable Bayley Scales of Infant Development score: improvement by 18% at age 1 years. Sample size: 60 patients: stratified into 3 groups to give power 0.85, alpha 0.05. Expect to accrue 2-4 patients per month.

Interventions

Erythropoetin 500 units/kg IV x 3 : dose 1. 12-72 hours preoperatively, dose 2. Postoperative day #1, 48 hours after separating from cardiopulmonary bypass, and dose 3. postoperative day #3, 48 hours after dose #2

DRUGNormal saline

Normal saline placebo in 3 doses:dose 1. 12-72 hours preoperatively, dose 2. Postoperative day #1, 48 hours after separating from cardiopulmonary bypass, and dose 3. postoperative day #3, 48 hours after dose #2. .

Sponsors

The Dana Foundation
CollaboratorOTHER
Eunice Kennedy Shriver National Institute of Child Health and Human Development (NICHD)
CollaboratorNIH
Baylor College of Medicine
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
TRIPLE (Subject, Caregiver, Investigator)

Eligibility

Sex/Gender
ALL
Age
1 Days to 30 Days
Healthy volunteers
No

Inclusion criteria

* Neonates (\<30 days) undergoing cardiac surgery with cardiopulmonary bypass will be enrolled. * Inclusion criteria include patients with: * single ventricle: hypoplastic left heart syndrome or variant undergoing Norwood Stage I or Sano palliation (SV group); * patients with D-transposition of the great vessels with or without ventricular septal defect (VSD) undergoing arterial switch operation with VSD closure if needed (ASO group); and * patients with interrupted or hypoplastic aortic arch with intracardiac defects (VSD, ASD, or subaortic stenosis) who are undergoing complete 2- ventricle repair including aortic arch advancement(AAA group), any other 2 ventricle lesion scheduled for complex anatomic repair.

Exclusion criteria

* Gestational age less than 35 weeks at birth * Weight less than 2 kg * Known recognizable dysmorphic syndrome * Surgery not requiring cardiopulmonary bypass * Preoperative cardiac arrest requiring chest compressions for greater than 3 minutes * Inability to enroll the patient greater than 12 hours preoperatively * Aortic crossclamping is not used * CPB times are anticipated to be less than 60 minutes * A nadir temperature on bypass greater than 25° C is planned. * Presence of known contraindications to EPO administration-sustained systolic blood pressure \>100, hemoglobin .18 g/dL, known allergy to EPO or one of its components * Platelet count \>600,000 per dL, INR \<0.8. * Maternal history of major vascular thrombosis, or multiple fetal loss (3 or more spontaneous abortions).

Design outcomes

Primary

MeasureTime frameDescription
Relative Difference in Total Maturity Score (TMS) From Preoperative Brain MRI to 7 Day Postoperative MRI7 days postoperatively.TMS is a measure of developmental maturity of the brain as assessed from T1 and T2-weighted images, grading myelination, cortical infolding, involution of the germinal matrix, and presence of bands of migrating glial cells. The brain MRIs were reviewed for infarction, hemorrhage, white matter injury (WMI), or dural sinovenous thrombosis (DVST). Injuries in each category are scored 0 for none, 1 for mild, 2 for moderate, 3 for severe. The score in each category is then multiplied by a proposed outcome significance multiplier. A total injury score of 0 signifies no injury, 1-5 a mild injury, 6-10 a moderate injury, and \>10 a severe injury. Range of scores is 0 - 51. Lower scores indicate less injury. The results present the relative difference of this score between the pre- and post-operative MRI. This was calculated as ((Post-operative MRI TMS - Pre-operative MRI TMS) / (Absolute(Pre-operative MRI TMS)) ). The proportion is then converted into a percentage.
Scores on Bayley Scales of Infant Development III at Age 1 Years.1 year postoperatively3 domains of the Bayley Scales of Infant Development III: Cognitive, Language and Motor Minimum score = 45, maximum score = 155; Population mean = 100, SD = 15; Higher scores are indicative of better outcomes Language scores are reflective of receptive communication and expressive communication subscales. Motor scores are reflective of fine motor and gross motor subscales.

Secondary

MeasureTime frame
EEG Seizure Burden in the First 72 Postoperative Hours. (Total Minutes of EEG Seizures).72 hours postoperatively.
Pharmacokinetics of High Dose Erythropoetin: 7 Erythropoetin Levels in First 24 Hours After First Dose (Maximum EPO Plasma Concentration)24 hours after first EPO dose.

Countries

United States

Participant flow

Recruitment details

Subjects recruited from September 2006 to February 2011 in the Texas Children's Hospital Heart Center NICU and CVICU.

Pre-assignment details

357 assessed for eligibility; 253 did not meet inclusion criteria. 42 subjects that eligible but consent not obtained (24 declined, 2 enrolled in another study, 16 investigator not available for consent or patient lived too far away). 62 consented, enrolled, received 1 dose EPO, but intended surgery not done on 3 subjects (no CPB); leaving 59.

Participants by arm

ArmCount
EPO Group
Patients randomized to receive the 3 doses of erythropoetin. Erythropoetin: Erythropoetin 500 units/kg IV x 3 : dose 1. 12-72 hours preoperatively, dose 2. Postoperative day #1, 48 hours after separating from cardiopulmonary bypass, and dose 3. postoperative day #3, 48 hours after dose #2
32
Control Group.
Patients randomized to receive 3 doses of normal saline control. Normal saline: Normal saline placebo in 3 doses:dose 1. 12-72 hours preoperatively, dose 2. Postoperative day #1, 48 hours after separating from cardiopulmonary bypass, and dose 3. postoperative day #3, 48 hours after dose #2. .
27
Total59

Withdrawals & dropouts

PeriodReasonFG000FG001
Overall StudyDeath33
Overall StudyDid not have intended surgery30
Overall StudyWithdrawal by Subject74

Baseline characteristics

CharacteristicEPO GroupControl Group.Total
Age, Continuous8.94 days
STANDARD_DEVIATION 5.35
8.12 days
STANDARD_DEVIATION 4.09
8.58 days
STANDARD_DEVIATION 4.85
Any preoperative MRI injury
Injury
13 participants9 participants22 participants
Any preoperative MRI injury
No Injury
19 participants18 participants37 participants
Cardiac diagnosis
Aortic Arch & Ventricular Septal Defect/Other
7 participants5 participants12 participants
Cardiac diagnosis
(D-Transposition of the Great Arteries (D-TGA)
9 participants12 participants21 participants
Cardiac diagnosis
Hypoplastic Left Heart Syndrome (HLHS)
16 participants10 participants26 participants
New postoperative MRI injury
Injury
13 participants13 participants26 participants
New postoperative MRI injury
No Injury
19 participants14 participants33 participants
Sex: Female, Male
Female
16 Participants11 Participants27 Participants
Sex: Female, Male
Male
16 Participants16 Participants32 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
— / —— / —
other
Total, other adverse events
4 / 353 / 27
serious
Total, serious adverse events
0 / 350 / 27

Outcome results

Primary

Relative Difference in Total Maturity Score (TMS) From Preoperative Brain MRI to 7 Day Postoperative MRI

TMS is a measure of developmental maturity of the brain as assessed from T1 and T2-weighted images, grading myelination, cortical infolding, involution of the germinal matrix, and presence of bands of migrating glial cells. The brain MRIs were reviewed for infarction, hemorrhage, white matter injury (WMI), or dural sinovenous thrombosis (DVST). Injuries in each category are scored 0 for none, 1 for mild, 2 for moderate, 3 for severe. The score in each category is then multiplied by a proposed outcome significance multiplier. A total injury score of 0 signifies no injury, 1-5 a mild injury, 6-10 a moderate injury, and \>10 a severe injury. Range of scores is 0 - 51. Lower scores indicate less injury. The results present the relative difference of this score between the pre- and post-operative MRI. This was calculated as ((Post-operative MRI TMS - Pre-operative MRI TMS) / (Absolute(Pre-operative MRI TMS)) ). The proportion is then converted into a percentage.

Time frame: 7 days postoperatively.

Population: Preoperative and postoperative MRIs were available to be scored on 33 subjects.

ArmMeasureValue (MEAN)
EPO GroupRelative Difference in Total Maturity Score (TMS) From Preoperative Brain MRI to 7 Day Postoperative MRI12.1 Percentage
Placebo GroupRelative Difference in Total Maturity Score (TMS) From Preoperative Brain MRI to 7 Day Postoperative MRI9.44 Percentage
Primary

Scores on Bayley Scales of Infant Development III at Age 1 Years.

3 domains of the Bayley Scales of Infant Development III: Cognitive, Language and Motor Minimum score = 45, maximum score = 155; Population mean = 100, SD = 15; Higher scores are indicative of better outcomes Language scores are reflective of receptive communication and expressive communication subscales. Motor scores are reflective of fine motor and gross motor subscales.

Time frame: 1 year postoperatively

ArmMeasureGroupValue (MEAN)Dispersion
EPO GroupScores on Bayley Scales of Infant Development III at Age 1 Years.12-Month BSID-III Language85.0 units on a scaleStandard Deviation 16.3
EPO GroupScores on Bayley Scales of Infant Development III at Age 1 Years.12-Month BSID-III Cognitive101.4 units on a scaleStandard Deviation 16.9
EPO GroupScores on Bayley Scales of Infant Development III at Age 1 Years.12-Month BSID-III Motor89.3 units on a scaleStandard Deviation 15.7
Placebo GroupScores on Bayley Scales of Infant Development III at Age 1 Years.12-Month BSID-III Language92.0 units on a scaleStandard Deviation 7.3
Placebo GroupScores on Bayley Scales of Infant Development III at Age 1 Years.12-Month BSID-III Cognitive100.9 units on a scaleStandard Deviation 10.2
Placebo GroupScores on Bayley Scales of Infant Development III at Age 1 Years.12-Month BSID-III Motor90.5 units on a scaleStandard Deviation 8.6
PlaceboScores on Bayley Scales of Infant Development III at Age 1 Years.12-Month BSID-III Cognitive106.3 units on a scaleStandard Deviation 10.7
PlaceboScores on Bayley Scales of Infant Development III at Age 1 Years.12-Month BSID-III Motor92.6 units on a scaleStandard Deviation 14.1
PlaceboScores on Bayley Scales of Infant Development III at Age 1 Years.12-Month BSID-III Language92.4 units on a scaleStandard Deviation 12.4
Secondary

EEG Seizure Burden in the First 72 Postoperative Hours. (Total Minutes of EEG Seizures).

Time frame: 72 hours postoperatively.

ArmMeasureValue (MEAN)
EPO GroupEEG Seizure Burden in the First 72 Postoperative Hours. (Total Minutes of EEG Seizures).0 minutes
Placebo GroupEEG Seizure Burden in the First 72 Postoperative Hours. (Total Minutes of EEG Seizures).0 minutes
Secondary

Pharmacokinetics of High Dose Erythropoetin: 7 Erythropoetin Levels in First 24 Hours After First Dose (Maximum EPO Plasma Concentration)

Time frame: 24 hours after first EPO dose.

Population: Three patients had pharmacokinetic data obtained; 1 placebo and 2 patients who received EPO 1000 units/kg. Pharmacokinetic modeling was not performed because of these small patient numbers; however, maximum EPO plasma concentrations were measured in the EPO group. Outcome does not apply to the Placebo group and as such they were not analyzed.

ArmMeasureValue (MEAN)
EPO GroupPharmacokinetics of High Dose Erythropoetin: 7 Erythropoetin Levels in First 24 Hours After First Dose (Maximum EPO Plasma Concentration)6931 mIU/mL

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