Related Experiment Video
Updated: Feb 13, 2026

A High-Fidelity Porcine Model of Orthotopic Heart Transplantation Following Donation after Circulatory Death
Published on: June 6, 2025
Transplantation of Hearts Donated after Circulatory Death
Christopher W White1, Simon J Messer2, Stephen R Large2
1Cardiac Surgery, University of Alberta, Edmonton, AB, Canada.
Insights
Transplantation of hearts from donors after circulatory death (DCD) is now a clinical reality. Novel resuscitation and preservation strategies minimize injury, enabling successful DCD heart transplants.
Area of Science:
- Cardiology
- Transplantation Medicine
- Organ Preservation
Background:
- Cardiac transplantation is limited by organ shortages from brain-dead donors.
- Hearts from donors after circulatory death (DCD) experience significant ischemic injury.
- Traditional heart transplant methods are unsuitable for DCD donors.
Purpose of the Study:
- To describe the successful clinical application of DCD heart transplantation.
- To highlight advancements enabling DCD heart viability and transplantation.
- To emphasize the importance of tailored DCD heart transplant protocols.
Main Methods:
- Development of DCD heart resuscitation strategies based on ischemic post-conditioning.
- Utilization of an ex situ heart perfusion device for normothermic preservation.
- Pre-transplant assessment of organ viability to minimize graft dysfunction.
Main Results:
- Successful clinical transplantation of hearts from DCD donors is now feasible.
- Ex situ perfusion minimizes cold ischemia and allows viability assessment.
- Tailored approaches have overcome challenges associated with DCD heart transplantation.
Conclusions:
- DCD heart transplantation is a viable clinical option to address organ shortages.
- Optimizing resuscitation, preservation, and evaluation is crucial for broader DCD heart transplant application.
- Further research into long-term outcomes will enhance DCD heart transplantation efficacy.
Abstract:
Cardiac transplantation has become limited by a critical shortage of suitable organs from brain-dead donors. Reports describing the successful clinical transplantation of hearts donated after circulatory death (DCD) have recently emerged. Hearts from DCD donors suffer significant ischemic injury prior to organ procurement; therefore, the traditional approach to the transplantation of hearts from brain-dead donors is not applicable to the DCD context. Advances in our understanding of ischemic post-conditioning have facilitated the development of DCD heart resuscitation strategies that can be used to minimize ischemia-reperfusion injury at the time of organ procurement. The availability of a clinically approved ex situ heart perfusion device now allows DCD heart preservation in a normothermic beating state and minimizes exposure to incremental cold ischemia. This technology also facilitates assessments of organ viability to be undertaken prior to transplantation, thereby minimizing the risk of primary graft dysfunction. The application of a tailored approach to DCD heart transplantation that focuses on organ resuscitation at the time of procurement, ex situ preservation, and pre-transplant assessments of organ viability has facilitated the successful clinical application of DCD heart transplantation. The transplantation of hearts from DCD donors is now a clinical reality. Investigating ways to optimize the resuscitation, preservation, evaluation, and long-term outcomes is vital to ensure a broader application of DCD heart transplantation in the future.
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