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February 12, 2026SHILAP Revista de lepidopterología2 citationsOpen Access

Machine perfusion for liver transplantation: opportunities and challenges for the next generation of transplant surgeons

CMCody Lendon MullensKSKumaran ShanmugarajahGWGlenn K. Wakam

Key Points

  • The review aims to evaluate the impact of machine perfusion techniques on liver transplantation outcomes and training.
  • Synthesis of randomized and real-world evidence on hypothermic oxygenated and normothermic perfusion methods.
  • Analysis of studies addressing ischemic biliary injury and biochemical injury outcomes.
  • Discussion of operational gains from 'back-to-base' workflows in transplant surgeries.
  • Hypothermic oxygenated perfusion reduces ischemic biliary injury in donation after circulatory death.
  • Normothermic perfusion decreases early biochemical injury and allograft dysfunction.
  • Implementation enables more planned daytime surgeries without increasing ninety-day costs.

Abstract

Machine perfusion is reshaping liver transplantation by turning preservation from passive storage into an active, physiologic intervention. This review synthesizes randomized and real-world evidence on hypothermic oxygenated and normothermic approaches and translates these data into practical guidance for training programs. Across studies, hypothermic oxygenated perfusion reduces ischemic biliary injury, especially in donation after circulatory death, while normothermic perfusion lowers early biochemical injury, decreases early allograft dysfunction, and increases organ utilization through ex situ viability testing. Contemporary cohorts show that “back-to-base” workflows can lessen early complications without increasing ninety-day costs, and that extended preservation, often paired with donor-care unit models, shifts many cases into planned daytime surgery. These operational gains matter for education: daytime cases enable rested faculty, deliberate practice, and graded autonomy. Perfusion broadens the case mix, and the pump itself introduces teachable competencies in setup, troubleshooting, and data-driven accept or decline decisions. Challenges include potential erosion of donor procurement experience, uneven access, and a still-evolving science of viability. We propose a competency-based curriculum spanning setup and safety, physiology, assessment and decision-making, and systems leadership, and outline research priorities as an area of inquiry for future transplantation surgeon-scientists in their training. Aligning training with this platform will improve care and strengthen the transplant workforce.

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Cite This Study

Mullens et al. (2026) studied this question.

synapsesocial.com/papers/698d6d695be6419ac0d5241dhttps://doi.org/10.3389/frtra.2026.1736191
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Impact of Back-to-Base Normothermic Machine Perfusion on Complications and Costs2024 · 78 citations
  2. 2A Novel Risk Score Using Flavin Mononucleotide (FMN) for Predicting Graft Loss After Liver Transplantation with Normothermic Machine Perfusion2025 · 2 citations
  3. 3Reassessment of Biomarkers and Acceptance Criteria in Normothermic Machine Perfusion for Liver Allografts2025 · 1 citations
  4. 4Deceased Brain Dead Donor Liver Transplantation and Utilization in the United States: Nighttime and Weekend Effects2018 · 29 citations
  5. 5Addressing Surgeon Burnout Through a Multi-level Approach: A National Call to Action2023 · 76 citations