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Updated: Mar 10, 2026

Large-Animal Model of Donation after Circulatory Death and Normothermic Regional Perfusion for Cardiac Assessment
Published on: May 10, 2022
Functional assessment and transplantation of the donor heart after circulatory death
Simon J Messer1, Richard G Axell2, Simon Colah1
1Department of Transplantation, Papworth Hospital NHS Foundation Trust, Papworth Everard, Cambridgeshire, United Kingdom.
Insights
Normothermic regional perfusion (NRP) enables functional assessment of donation after circulatory-determined death (DCD) hearts, increasing heart transplant activity by 45%. This method ensures only viable organs are selected, minimizing graft dysfunction and improving patient outcomes.
Area of Science:
- Cardiovascular Surgery
- Transplantation Medicine
- Organ Preservation
Background:
- Increasing demand for heart transplantation due to donor shortages.
- Limitations in assessing donor heart viability after circulatory death.
- Exploration of donation after circulatory-determined death (DCD) for organ procurement.
Purpose of the Study:
- To introduce and evaluate a novel method for functional assessment of DCD hearts.
- To establish a reliable technique for selecting viable DCD hearts for transplantation.
- To increase heart transplant activity through the utilization of DCD donors.
Main Methods:
- Normothermic regional perfusion (NRP) to restore function to arrested DCD hearts.
- Functional assessment using cardiac-output studies, echocardiography, and pressure-volume loops.
- Phased implementation: feasibility studies followed by clinical transplantation of assessed hearts.
Main Results:
- NRP successfully reperfused and allowed functional assessment in 13 DCD donors.
- Two of four hearts in the feasibility phase were unsuitable; nine were transplanted clinically.
- 100% survival rate in transplanted patients, with no episodes of rejection over 1,436 patient-days.
Conclusions:
- NRP facilitates rapid reperfusion and functional assessment of DCD donor hearts.
- Ensures selection of viable hearts, minimizing primary graft dysfunction.
- Achieved a 45% increase in heart transplant activity with high confidence in DCD heart transplantation.
Background:
After a severe shortage of brain-dead donors, the demand for heart transplantation has never been greater. In an attempt to increase organ supply, abdominal and lung transplant programs have turned to the donation after circulatory-determined death (DCD) donor. However, because heart function cannot be assessed after circulatory death, DCD heart transplantation was deemed high risk and never adopted routinely. We report a novel method of functional assessment of the DCD heart resulting in a successful clinical program.
Methods:
Normothermic regional perfusion (NRP) was used to restore function to the arrested DCD heart within the donor after exclusion of the cerebral circulation. After weaning from support, DCD hearts underwent functional assessment with cardiac-output studies, echocardiography, and pressure-volume loops. In the feasibility phase, hearts were transported perfused before evaluation of function in modified working mode extracorporeally. After the establishment of a reliable assessment technique, hearts with demonstrable good function were then selected for clinical transplantation.
Results:
NRP was instituted in 13 adult DCD donors, median age of 33 years (interquartile range [IQR], 28-38 years), after a median ischemic time from withdrawal to perfusion of 24 minutes (IQR, 21-29; range, 17-146 minutes). Two of 4 hearts in the feasibility phase were unsuitable for transplantation after functional assessment. Nine DCD hearts were transplanted in the clinical phase, with 100% survival. The median intensive care duration was 5 days (IQR, 4-5 days), with 2 patients requiring mechanical support. There were no episodes of rejection (total, 1,436 patient-days; range, 48-297). During the same period, we performed 20 standard heart transplants using brain-dead donors.
Conclusions:
NRP allows rapid reperfusion and functional assessment of the DCD donor heart, ensuring only viable hearts are selected for transplantation. This technique minimizes the risk of primary graft dysfunction and maximizes confidence in DCD heart transplantation, realizing a 45% increase in our heart transplant activity.
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