Impella 5.5 as a bridge to dual-organ transplantation

The Impella 5.5 is increasingly utilized as temporary mechanical circulatory support to bridge patients in cardiogenic shock to heart transplantation. Patients listed for dual-organ transplantation may experience longer wait times than heart transplant alone. We aimed to evaluate the feasibility of Impella 5.5 as a bridge to dual-organ transplant. We performed a retrospective review of patients with cardiogenic shock supported with Impella 5.5 who subsequently underwent heart transplant or dual-organ transplant from 2021 to 2025. Dual-organ transplant included combined heart–kidney, heart–liver, and heart–lung transplants. Fifty-four total patients received Impella 5.5 bridge, for which six were dual-organ transplants. Blood type A was most common among both groups (heart transplant 39.6%, dual-organ transplant 66.7%). Median ages were 56 (IQR 46.5–61.2) for isolated heart transplants and 57.5 (IQR 37.5–62) years old for dual-organ transplants. All patients were SCAI class C or higher. Non-ischemic cardiomyopathy was the predominant etiology (heart transplant 100%, dual-organ transplant 83%). Dual organ transplant recipients underwent heart–kidney ( n = 3), heart–lung ( n = 1), or heart–liver ( n = 2) transplants, with median Impella 5.5 support durations of 117, 19, and 42 days, respectively. This is compared to a median support duration of 14 days for isolated heart transplant recipients. Detailed baseline characteristics and post-transplant outcomes were similar across subgroups. Use of Impella 5.5 as a bridge to dual-organ transplants is feasible and safe in selected patients with cardiogenic shock with multi-organ failure. Further studies are needed to assess laboratory data, hemodynamics trajectories, and long-term survival outcomes in this population.

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Publication Details

Journal
The International Journal of Artificial Organs
Published
2026-08-27
DOI
https://doi.org/10.1177/03913988261476499
Primary Topic
Mechanical Circulatory Support Devices
Type
article
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article

Impella 5.5 as a bridge to dual-organ transplantation

G. Hickey, Raj Ramanan, Ryan Rivosecchi, Jonathan Wolfe et al.
The International Journal of Artificial Organs
Mechanical Circulatory Support Devices
article

Impella 5.5 as a bridge to dual-organ transplantation

G. Hickey, Raj Ramanan, Ryan Rivosecchi, Jonathan Wolfe, Nicole Kunz, Mohamed Abdullah, George Chachati, Mary Keebler, Alex C. Crane, Wyatt Klass, Edward T Horn, David Kaczorowski
article en

Abstract

The Impella 5.5 is increasingly utilized as temporary mechanical circulatory support to bridge patients in cardiogenic shock to heart transplantation. Patients listed for dual-organ transplantation may experience longer wait times than heart transplant alone. We aimed to evaluate the feasibility of Impella 5.5 as a bridge to dual-organ transplant. We performed a retrospective review of patients with cardiogenic shock supported with Impella 5.5 who subsequently underwent heart transplant or dual-organ transplant from 2021 to 2025. Dual-organ transplant included combined heart–kidney, heart–liver, and heart–lung transplants. Fifty-four total patients received Impella 5.5 bridge, for which six were dual-organ transplants. Blood type A was most common among both groups (heart transplant 39.6%, dual-organ transplant 66.7%). Median ages were 56 (IQR 46.5–61.2) for isolated heart transplants and 57.5 (IQR 37.5–62) years old for dual-organ transplants. All patients were SCAI class C or higher. Non-ischemic cardiomyopathy was the predominant etiology (heart transplant 100%, dual-organ transplant 83%). Dual organ transplant recipients underwent heart–kidney ( n = 3), heart–lung ( n = 1), or heart–liver ( n = 2) transplants, with median Impella 5.5 support durations of 117, 19, and 42 days, respectively. This is compared to a median support duration of 14 days for isolated heart transplant recipients. Detailed baseline characteristics and post-transplant outcomes were similar across subgroups. Use of Impella 5.5 as a bridge to dual-organ transplants is feasible and safe in selected patients with cardiogenic shock with multi-organ failure. Further studies are needed to assess laboratory data, hemodynamics trajectories, and long-term survival outcomes in this population.

The International Journal of Artificial Organs
University of Pittsburgh (US), University of Pittsburgh Medical Center (US)
Good health and well-being
Openalex Percentile: Top 19%
Mechanical Circulatory Support Devices
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