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Updated: Aug 23, 2025

In Vitro Thrombosis Test for Ventricular Assist Devices
Published on: March 21, 2025
Cost-effectiveness of bivalirudin in pediatric ventricular assist devices
Danielle Burstein1, Stephen Kimmel2, Mary Putt3
1Division of Cardiology, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania.
Insights
Bivalirudin use in pediatric Ventricular Assist Devices (VAD) increased significantly, showing lower mortality and cost-effectiveness. This anticoagulant is now a preferred, cost-effective therapy for young VAD patients.
Area of Science:
- Pediatric Cardiology
- Medical Device Technology
- Pharmacoeconomics
Background:
- Bivalirudin use in pediatric Ventricular Assist Devices (VAD) is increasing, despite cost concerns.
- Previous data suggest improved outcomes with bivalirudin compared to heparin in pediatric VAD patients.
- This study aimed to quantify bivalirudin use trends and compare its outcomes, resource utilization, and cost-effectiveness against heparin.
Purpose of the Study:
- To analyze trends in bivalirudin utilization for pediatric VAD recipients.
- To compare clinical outcomes, resource use, and cost-effectiveness of bivalirudin versus heparin in pediatric VAD patients.
- To determine if bivalirudin is a cost-effective anticoagulant therapy for this population.
Main Methods:
- Retrospective analysis of pediatric VAD recipients (0-6 years) from 2009-2021 using the Pediatric Health Information System.
- Trend analysis for bivalirudin use and Fine-Gray subdistribution hazard ratios for outcome comparisons.
- Daily-level hospital cost analysis and incremental cost-effectiveness ratio (ICER) calculation.
Main Results:
- Bivalirudin use rose to 90% by 2021 (trend p<0.01).
- Bivalirudin was associated with lower hospital mortality (26% vs 32%) and VAD-specific mortality (20% vs 27%).
- Despite longer length of stay, bivalirudin showed lower daily costs (cost ratio 0.87) and an ICER of $61,192 per QALY.
Conclusions:
- Bivalirudin use has become predominant in young pediatric VAD recipients.
- Bivalirudin is associated with significantly lower hospital mortality.
- Bivalirudin represents a cost-effective therapy for pediatric VAD patients with an ICER below $65,000.
Background:
Despite recent data suggesting improved outcomes with bivalirudin vs heparin in pediatric Ventricular assist devices (VAD), higher costs remain a barrier. This study quantified trends in bivalirudin use and compared outcomes, resource utilization, and cost-effectiveness associated with bivalirudin vs heparin.
Methods:
Children age 0 to 6 year who received VAD from 2009 to 2021 were identified in Pediatric Health Information System. Bivalirudin use was evaluated using trend analysis and outcomes were compared using Fine-Gray subdistrubtion hazard ratios (SHR). Daily-level hospital costs were compared due to differences in length of stay. Cost-effectiveness was evaluated using incremental cost-effectiveness ratio (ICER).
Results:
Of 691 pediatric VAD recipients (median age 1 year, IQR 0-2), 304 (44%) received bivalirudin with 90% receiving bivalirudin in 2021 (trend p-value <0.01). Bivalirudin had lower hospital mortality (26% vs 32%; adjusted SHR 0.57, 95% CI 0.40-0.83) driven by lower VAD mortality (20% vs 27%; adjusted SHR 0.46, 95% CI 0.32-0.77) after adjusting for year, age, diagnosis, and center VAD volume. Post-VAD length of stay was longer for bivalirudin than heparin (median 91 vs 64 days, respectively, p < 0.001). Median daily-level costs were lower among bivalirudin (cost ratio 0.87, 95% CI 0.79-0.96) with higher pharmacy costs offset by lower imaging, laboratory, supply, and room/board costs. Estimated ICER for bivalirudin vs heparin was $61,192 per quality-adjusted life year gained with a range of $27,673 to $131,243.
Conclusions:
Bivalirudin use significantly increased over the past decade and is now used in 90% young pediatric VAD recipients. Bivalirudin was associated with significantly lower hospital mortality and an ICER <$65,000, making it a cost-effective therapy for pediatric VAD recipients.
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