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Published on: November 28, 2025
Long-term transplant outcomes of donor hearts with left ventricular dysfunction
Agustin Sibona1, Kiran K Khush2, Udo E Oyoyo3
1Department of Cardiothoracic Surgery, Loma Linda University Medical Center, Loma Linda, Calif.
Insights
Donor hearts with reduced left ventricular ejection fraction show excellent long-term survival, comparable to normal donor hearts. This finding suggests that depressed ejection fraction alone should not preclude donor heart transplantation, as functional recovery is often observed.
Area of Science:
- Cardiology
- Transplantation Medicine
- Organ Donation
Background:
- Left ventricular dysfunction leads to the exclusion of approximately 19% of potential donor hearts.
- Previous single-center reports suggested acceptable outcomes with donor hearts exhibiting left ventricular dysfunction.
Purpose of the Study:
- To investigate the long-term survival rates of heart transplant recipients who received donor hearts with left ventricular dysfunction.
- To determine if reduced ejection fraction alone is a valid criterion for excluding donor hearts.
Main Methods:
- Analysis of adult heart transplant data from January 2000 to March 2016 using the United Network for Organ Sharing database.
- Comparison of baseline and postoperative characteristics using Kaplan-Meier survival curves and Cox regression analysis.
- Propensity score matching was employed to adjust for patient profile variations across different donor ejection fraction categories.
Main Results:
- A total of 31,712 donor hearts were transplanted; donor hearts with reduced ejection fraction were associated with younger donors and recipients on mechanical ventilation.
- Kaplan-Meier survival analysis revealed no significant difference in recipient survival up to 15 years (P = .694).
- Cox regression analysis, after adjustments, indicated no statistically significant impact of donor ejection fraction on mortality, whether analyzed as a categoric or continuous variable.
Conclusions:
- Carefully selected donor hearts with diminished left ventricular ejection fraction can achieve long-term survival comparable to hearts with normal function.
- Depressed left ventricular ejection fraction should not be the sole reason for excluding donor hearts.
- Observed functional recovery in impaired donor hearts suggests cautious interpretation of left ventricular function assessments in brain-dead donors.
Objective:
Despite small single-center reports demonstrating acceptable outcomes using donor hearts with left ventricular dysfunction, 19% of potential donor hearts are currently unused exclusively because of left ventricular dysfunction. We investigated modern long-term survival of transplanted donor hearts with left ventricular dysfunction using a large, diverse cohort.
Methods:
Using the United Network for Organ Sharing database, we reviewed all adult heart transplants between January 2000 and March 2016. Baseline and postoperative characteristics and Kaplan-Meier survival curves were compared. A covariates-adjusted Cox regression model was developed to estimate post-transplant mortality. To address observed variation in patient profile across donor ejection fraction, a propensity score was built using Cox predictors as covariates in a generalized multiple linear regression model. All the variables in the original Cox model were included. For each recipient, a predicted donor ejection fraction was generated and exported as a new balancing score that was used in a subsequent Cox model. Cubic spline analysis suggested that at most 3 and perhaps no ejection fraction categories were appropriate. Therefore, in 1 Cox model we added donor ejection fraction as a grouped variable (using the spline-directed categories) and in the other as a continuous variable.
Results:
A total of 31,712 donor hearts were transplanted during the study period. A total of 742 donor hearts were excluded for no recorded left ventricular ejection fraction, and 20 donor hearts were excluded for left ventricular ejection fraction less than 20%. Donor hearts with reduced left ventricular ejection fraction were from younger donors, more commonly male donors, and donors with lower body mass index than normal donor hearts. Recipients of donor hearts with reduced left ventricular ejection fraction were more likely to be on mechanical ventilation. Kaplan-Meier curves revealed no significant differences in recipient survival up to 15 years of follow-up (P = .694 log-rank test). Cox regression analysis showed that after adjustment for propensity variation, transplant year, and region, ejection fraction had no statistically significant impact on mortality when analyzed as a categoric or continuous variable. Left ventricular ejection fraction at approximately 1 year after transplantation was normal for all groups.
Conclusions:
Carefully selected donor hearts with even markedly diminished left ventricular ejection fraction can be transplanted with long-term survival equivalent to normal donor hearts and therefore should not be excluded from consideration on the basis of depressed left ventricular ejection fraction alone. Functional recovery of even the most impaired donor hearts in this study suggests that studies of left ventricular function in the setting of brain death should be interpreted cautiously.
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