Intraoperative Goal-Directed Perfusion Improves Outcomes in Left Ventricular Assist Device Explant Heart Transplantation

Left ventricular assist device (LVAD) explant heart transplantation represents a metabolically vulnerable population with an increased risk for renal failure and mortality. Oxygen extraction ratio (O 2 ER), which integrates oxygen delivery and tissue oxygen demand, may provide a physiologic marker of cumulative metabolic stress during cardiopulmonary bypass (CPB). Adult LVAD-explant heart transplant recipients at a single center from October 2021 to June 2025 were analyzed using continuous perfusion data captured during CPB. Oxygen extraction ratio was calculated continuously, and cumulative oxygen extraction burden was quantified as the area above an O 2 ER threshold of 0.20. Patients were stratified by median O 2 ER burden. Among 110 patients, a higher intraoperative O 2 ER burden was associated with increased postoperative renal replacement therapy (odds ratio [OR], 4.16; 95% confidence interval [CI], 1.35–12.83) and increased 2-year mortality (hazard ratio [HR], 7.61; 95% CI, 1.49–38.73) after inverse probability weighting adjustment. A higher O 2 ER burden was also associated with a lower immediate postoperative cardiac index and increased vasoactive inotrope requirements. Donor hypertension, recipient diabetes, static storage modality, and a lower intraoperative oxygen delivery index were associated with an increased O 2 ER burden. These findings suggest that cumulative oxygen extraction during CPB reflects intraoperative metabolic stress and may represent a physiologically integrated perfusion target in LVAD-explant heart transplantation.

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Journal
ASAIO Journal
Published
2026-09-28
DOI
https://doi.org/10.1097/mat.0000000000002866
Primary Topic
Mechanical Circulatory Support Devices
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article
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article

Intraoperative Goal-Directed Perfusion Improves Outcomes in Left Ventricular Assist Device Explant Heart Transplantation

Christian Eidson, Walter Navid, Chen Chia Wang, Eric Quintana et al.
ASAIO Journal
Mechanical Circulatory Support Devices
article

Intraoperative Goal-Directed Perfusion Improves Outcomes in Left Ventricular Assist Device Explant Heart Transplantation

Christian Eidson, Walter Navid, Chen Chia Wang, Eric Quintana, John M. Trahanas, Mark Petrovic, Aaron M. Williams, Ashish Shah, Awab Ahmad, Kevin McGann, Matthew Bacchetta, Kelly Schlendorf, Brian Lima, Swaroop Bommareddi, Tarek Absi, Aniket Rali
article en

Abstract

Left ventricular assist device (LVAD) explant heart transplantation represents a metabolically vulnerable population with an increased risk for renal failure and mortality. Oxygen extraction ratio (O 2 ER), which integrates oxygen delivery and tissue oxygen demand, may provide a physiologic marker of cumulative metabolic stress during cardiopulmonary bypass (CPB). Adult LVAD-explant heart transplant recipients at a single center from October 2021 to June 2025 were analyzed using continuous perfusion data captured during CPB. Oxygen extraction ratio was calculated continuously, and cumulative oxygen extraction burden was quantified as the area above an O 2 ER threshold of 0.20. Patients were stratified by median O 2 ER burden. Among 110 patients, a higher intraoperative O 2 ER burden was associated with increased postoperative renal replacement therapy (odds ratio [OR], 4.16; 95% confidence interval [CI], 1.35–12.83) and increased 2-year mortality (hazard ratio [HR], 7.61; 95% CI, 1.49–38.73) after inverse probability weighting adjustment. A higher O 2 ER burden was also associated with a lower immediate postoperative cardiac index and increased vasoactive inotrope requirements. Donor hypertension, recipient diabetes, static storage modality, and a lower intraoperative oxygen delivery index were associated with an increased O 2 ER burden. These findings suggest that cumulative oxygen extraction during CPB reflects intraoperative metabolic stress and may represent a physiologically integrated perfusion target in LVAD-explant heart transplantation.

ASAIO Journal
Vanderbilt University (US), Vanderbilt University Medical Center (US)
Good health and well-being
Openalex Percentile: Top 22%
Mechanical Circulatory Support Devices
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