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Phenotype-Guided Outpatient Levosimendan as a Bridge-to-Transplant in Low-Output Advanced Heart Failure: A
Ricardo Carvalheiro1, Ana Raquel Santos1, Ana Rita Teixeira1
1Department of Cardiology, Unidade Local de São José/Hospital de Santa Marta, R. de Santa Marta 50, 1169-024 Lisbon, Portugal.
Insights
A personalized outpatient levosimendan regimen effectively bridges advanced heart failure patients to heart transplantation, reducing hospitalizations and maintaining stable renal function. This adaptable approach shows promise for preserving transplant candidacy.
Area of Science:
- Cardiology
- Transplantation Medicine
- Pharmacology
Background:
- Advanced heart failure (HF) presents significant morbidity and mortality challenges, particularly for patients awaiting heart transplantation (HT).
- Deterioration on the HT waiting list is a major clinical hurdle, necessitating effective bridge-to-transplant strategies.
- Intermittent outpatient levosimendan is a potential bridge strategy, but its optimal use and impact on peri-transplant outcomes require further investigation.
Purpose of the Study:
- To evaluate a personalized, protocolized outpatient levosimendan pathway for patients with low-output advanced HF (INTERMACS 3 phenotype).
- To assess the safety and efficacy of this strategy in stabilizing perfusion and congestion, thereby preserving transplant candidacy.
- To analyze the impact on HF hospitalizations, biomarkers, and peri-transplant outcomes.
Main Methods:
- A single-center, retrospective cohort study of 25 adult patients listed for HT between 2019 and 2024.
- Patients received standardized 14-day interval infusions of intravenous levosimendan (6h, target 0.2 μg/kg/min) until transplant.
- Personalization included phenotype-based eligibility, predefined safety/titration rules, and nurse-supervised monitoring.
Main Results:
- No levosimendan infusions were discontinued due to hypotension or arrhythmia; no adverse events were directly attributed to the drug.
- HF hospitalizations significantly decreased during treatment compared to the prior 6 months (48% vs. 20%, p=0.033).
- Renal function remained stable, NT-proBNP trended downward, and peri-transplant outcomes included 26% vasoplegia and 9% 30-day mortality post-transplant.
Conclusions:
- A standardized yet flexible outpatient levosimendan regimen, tailored to a specific phenotype, serves as an effective personalized bridge strategy for advanced HF.
- This approach led to reduced hospitalizations, maintained renal function, and demonstrated acceptable peri-transplant outcomes.
- Further multicenter studies are warranted to confirm these findings and refine treatment strategies, considering patient heterogeneity.
Abstract:
Background: Advanced heart failure (HF) carries high morbidity and mortality, and deterioration on the heart transplantation (HT) waiting list remains a major challenge. Intermittent outpatient levosimendan has been proposed as a bridge strategy, but the optimal regimen and its impact on peri-transplant outcomes remain uncertain. Within a personalized-medicine framework, we targeted a low-output/INTERMACS 3 phenotype and operationalized an adaptable, protocolized levosimendan pathway focused on perfusion/congestion stabilization to preserve transplant candidacy. Methods: We conducted a single-center, retrospective cohort study of 25 consecutive adults actively listed for HT between 2019 and 2024, treated with a standardized outpatient program of a 14-day interval of 6 h intravenous levosimendan infusions (target 0.2 μg/kg/min infusions) continued until transplant. Personalization in this program was operationalized through (i) phenotype-based eligibility (low CI and elevated filling pressures despite GDMT), (ii) predefined titration and safety rules for blood pressure, arrhythmias, and renal function, and (iii) individualized continuation until transplant with nurse-supervised monitoring and review of patient trajectories. Baseline characteristics, treatment exposure and safety, changes in hospitalizations and biomarkers, and peri-transplant outcomes were analyzed. Results: Patients were predominantly male (68%), with a mean age of 47.9 ± 17.5 years and severe LV dysfunction (LVEF 30.6 ± 9.8%). Median treatment duration was 131 days (IQR 60-241). No infusions required discontinuation for hypotension or arrhythmia, and no adverse events were directly attributed to levosimendan. Two patients (8%) died on the waiting list, both unrelated to therapy. During treatment, HF hospitalizations decreased significantly compared with the previous 6 months (48% vs. 20%, p = 0.033), renal function remained stable, and NT-proBNP trended downward. Of the 23 patients transplanted, two (9%) underwent urgent HT during decompensation. Post-transplant, vasoplegia occurred in 26% (n = 6 of 23), and 30-day mortality was 9% (n = 2 of 23). Conclusions: By defining the target phenotype, therapeutic goals, and adaptation rules, this study shows how a standardized but flexible outpatient levosimendan regimen can function as a personalized bridge strategy for low-output advanced HF. The approach was associated with fewer hospitalizations, stable renal function, and acceptable peri-transplant outcomes, and merits confirmation in multicenter cohorts with attention to patient heterogeneity and treatment effect refinement.
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