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Updated: Jan 15, 2026

Large-Animal Model of Donation after Circulatory Death and Normothermic Regional Perfusion for Cardiac Assessment
Published on: May 10, 2022
Management of Normothermic Regional Perfusion Performance in Uncontrolled Versus Controlled Donation After
Chiara Lazzeri1, Davide Ghinolfi2, Manuela Bonizzoli3
1Regional Transplant Center, 50135 Florence, Italy.
Insights
Normothermic regional perfusion (NRP) management differs between uncontrolled (uDCD) and controlled (cDCD) donors due to varying ischemic times. Uncontrolled DCDs exhibit more severe metabolic issues during NRP, suggesting optimization is needed for organ transplantation.
Area of Science:
- Transplantation Medicine
- Organ Preservation
- Donor Management
Background:
- Controlled (cDCD) and uncontrolled (uDCD) deceased donation after circulatory determination (DCD) differ significantly in ischemic and reperfusion injury duration.
- Normothermic regional perfusion (NRP) is a technique used to assess and potentially improve organ viability in DCDs.
- Hypothesized differences in NRP performance and management exist between uDCDs and cDCDs.
Purpose of the Study:
- To compare the management and performance of NRP in uncontrolled DCDs versus controlled DCDs.
- To investigate dynamic changes in blood flow and lactate levels during NRP in both donor types.
- To identify potential areas for optimizing NRP protocols in DCD organ donation.
Main Methods:
- A multi-center study evaluated 99 DCD donors from 2020-2024.
- NRP performance and management were compared between uDCDs (n=44) and cDCDs (n=45).
- Key metrics included NRP duration, blood flow rates, lactate, pH, glucose, and administered fluids, insulin, and bicarbonate.
Main Results:
- NRP duration was significantly longer in uDCDs compared to cDCDs (p=0.001).
- While lactate levels remained stable, transaminases increased, and blood flow decreased progressively during NRP in both groups.
- uDCDs showed lower pH, higher glucose, and required more fluids, bicarbonate, and insulin during NRP compared to cDCDs.
Conclusions:
- NRP performance and management strategies differ significantly between uDCDs and cDCDs, likely due to variations in ischemic injury duration.
- Uncontrolled DCDs present more severe metabolic derangements during NRP that are only partially reversible with aggressive treatment.
- Optimization of NRP management in DCDs is crucial to address the gap between organ supply and transplantation demand.
Abstract:
Introduction: Controlled (c-) and uncontrolled (u-) DCDs are two entirely different types of donors, mainly because the duration of ischemic and reperfusion injury differs between them. We hypothesized that normothermic regional perfusion (NRP) management and performance (as indicated by the dynamic changes in blood flow and lactate) might be different in uDCDs and in cDCDs. Methods: We assessed 99 DCD donors that were consecutively evaluated by the Tuscany Regional Transplant Center from 2020 to 2024 (multi-center investigation), focusing on the comparison between NRP performance and management in uDCDs (n = 44) vs. cDCDs (n = 45). Results: NRP duration was significantly higher in uDCDs compared to cDCDs (p = 0.001). During NRP, we observed no changes in lactate values in uDCDs and cDCDs, a significant increase in transaminases, and a progressive reduction in NRP blood flow rates despite the administration of more fluids. Throughout the entire NRP duration, pH values were significantly lower and glucose levels were higher in uDCDs compared to cDCDs, even though a higher dosage of bicarbonate and insulin units were administered in uDCDs. Conclusions: In our series, we documented that NRP performance and management differed in uDCDs compared to cDCDs. This phenomenon may be mainly related to the different duration of the ischemic injury between these two types of donors. During NRP, uncontrolled DCDs showed a more severe metabolic derangement, which was only partially reversable by a more aggressive treatment (higher fluid volumes, insulin and bicarbonate dosages). Our results strongly suggest that there is likely space for optimization of NRP management in DCDs. Further research should address this issue, considering the disparity between the supply of organs and increasing transplantation needs.
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