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September 20, 2025Journal of Clinical Medicine2 citationsOpen Access

Ex-Situ Dual Hypothermic Oxygenated Machine Perfusion in Full-Left-Full-Right Split Liver Transplantation for Two Adult Recipients

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KKKonrad KobryńAFAleksandra FrankowskaPRPaweł Rykowski

Key Points

  • Both recipients showed stable graft function after one year, affirming the success of the procedure.
  • DHOPE effectively reduced cold ischemia time, enhancing recovery with minimal complications.
  • This is the first application of DHOPE in FLFR SLT for adult recipients, indicating its feasibility.
  • The findings suggest that machine perfusion may become a standard approach in split liver transplantation.

Abstract

Background/Objectives: The shortage of liver grafts remains a major challenge in transplantation. Full-left-full-right (FLFR) split liver transplantation (SLT) expands the donor pool by providing two grafts for small adult recipients. However, prolonged cold ischemia time (CIT) and ischemia-reperfusion injury (IRI) limit its success. Methods: We report a case of FLFR SLT utilizing ex situ dual hypothermic oxygenated machine perfusion (DHOPE) to mitigate IRI and enhance graft viability. A brain-dead donor’s liver was split under continuous DHOPE, followed by simultaneous transplantation into two adult recipients. Results: Both recipients exhibited stable graft function at one-year follow-up. DHOPE effectively reduced CIT and optimized postoperative recovery, with no major complications beyond Clavien–Dindo Grade IIIb. Conclusions: This is the first reported FLFR SLT using ex situ DHOPE for two adult recipients, demonstrating its feasibility in reducing CIT and improving outcomes. Machine perfusion may become a standard in FLFR SLT.

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Cite This Study

Kobryń et al. (2025) studied this question.

synapsesocial.com/papers/68d46fcd31b076d99fa69fddhttps://doi.org/10.3390/jcm14186596
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