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PMID: 41960089 Published · epublish English

Elevated oxygen extraction during heart transplantation is associated with increased morbidity and mortality: Implications for goal-directed perfusion.

JTCVS open ·Vol. 29 ·2026-02-00

Petrovic M, Ahmad A, Wang CC, Williams AM, Trahanas J, Bommareddi S, Absi T, Quintana E, McGann K, DeVries S, Lowman J, Rali AS, Siddiqi H, Amancherla K, Tsai S, Brinkley M, Menachem JN, Pedrotty D, Punnoose L, Lindenfeld J, Sacks S, Zalawadiya S, Lepore A, Warhoover M, Bacchetta M, Schlendorf K, Shah AS, Lima B

Abstract

Goal-directed perfusion (GDP) during cardiopulmonary bypass (CPB) commonly targets indexed oxygen delivery (DO2i), yet fixed delivery thresholds may ignore patient-specific metabolic demand. The oxygen extraction ratio (O2ER) integrates delivery and consumption and may better reflect supply-demand balance during heart transplantation. We evaluated whether intra-CPB O2ER burden is associated with adverse outcomes after adult heart transplantation and whether O2ER provides incremental prognostic value beyond DO2i. We retrospectively analyzed adult heart transplantations performed at a single center between November 2021 and June 2025. Minute-level CPB data were extracted. O2ER was the primary exposure, and the primary outcome was a composite morbidity-mortality (M-M) endpoint (severe primary graft dysfunction [PGD], ventilation for >72 hours, intensive care unit length of stay >15 days, renal replacement therapy, or 90-day mortality). Generalized propensity score-weighted logistic regression modeled associations adjusting for prespecified donor/recipient/procedural covariates. Comparative models assessed O2ER versus DO2i. A post hoc analysis quantified pre- and post-reperfusion O2ER area under the receiver operating characteristic curve (AUC) to localize phase-specific risk. Among 381 heart transplant recipients, 40 (10.5%) experienced M-M. O2ER trajectories separated between the M-M and non-M-M groups during the mid-procedure window (∼35-100 minutes). Each additional 10 minutes at O2ER > 0.20 was associated with higher odds of M-M (odds ratio [OR], 1.07; 95% confidence interval [CI], 1.00-1.15; P = .043) and 90-day mortality (OR, 1.13; 95% CI, 1.02-1.26; adjusted P = .02). Adding time at O2ER > 0.20 improved a DO2i < 280-only model (P = .04), whereas adding DO2i below-time to an O2ER-only model did not (P = .30). Phase-specific analysis showed that post-reperfusion O2ER AUC was independently associated with M-M (OR, 1.23; 95% CI, 1.08-1.40; P = .002) and severe PGD (OR, 1.22; 95% CI, 1.04-1.43; P = .01), while pre-reperfusion O2ER AUC was related to 90-day mortality (OR, 1.05; 95% CI, 1.004-1.10; P = .03). During heart transplantation, a higher O2ER burden on CPB is linearly associated with increased post-transplant morbidity and early mortality and contributes prognostic information beyond DO2i. These data support an O2ER-guided GDP strategy that minimizes time (or AUC) above O2ER thresholds, with heightened vigilance regarding reperfusion. Prospective validation is warranted.

Keywords
cardiopulmonary bypass goal directed perfusion heart transplantation oxygen delivery oxygen extraction ratio
Article Info
Journal
JTCVS open
Abbr.
JTCVS Open
ISSN
2666-2736
Published
2026-02-00
Language
English
Country/Region
Netherlands
NLM ID
101768541
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