Donation after circulatory death; cholangiopathy in the machine age

Ian S Currie1,2,3, Fiona M Hunt1,2,3

  • 1Edinburgh Transplant Centre.

Insights

Machine perfusion strategies like Normothermic Regional Perfusion and Hypothermic Machine Perfusion effectively reduce liver transplant cholangiopathy in donation after circulatory death grafts. Further research is needed for other perfusion methods.

Area of Science:

  • Hepatology
  • Transplantation Surgery
  • Organ Preservation

Background:

  • Donation after circulatory death (DCD) liver transplantation faces challenges with post-transplant cholangiopathy.
  • Cholangiopathy significantly impacts patient outcomes, leading to re-transplantation and mortality.
  • Machine perfusion is an evolving strategy to mitigate DCD liver graft injury.

Purpose of the Study:

  • To review current evidence on machine perfusion techniques for reducing cholangiopathy in DCD liver grafts.
  • To evaluate the effectiveness of different machine perfusion strategies in mitigating transplant cholangiopathy.
  • To identify optimal machine perfusion approaches for DCD liver transplantation.

Main Methods:

  • Systematic review of published literature on machine perfusion of DCD liver grafts.
  • Analysis of studies focusing on transplant cholangiopathy as a primary outcome.
  • Evaluation of Normothermic Regional Perfusion (NRP), Hypothermic Machine Perfusion (HMP), and Normothermic Machine Perfusion (NMP).

Main Results:

  • Normothermic Regional Perfusion and Hypothermic Machine Perfusion consistently reduce cholangiopathy rates.
  • Efficacy of Normothermic Machine Perfusion at donor or recipient centers is less established.
  • Combined hypothermic followed by normothermic perfusion shows promising advantages.

Conclusions:

  • Donor center NRP and recipient center HMP are currently best supported for reducing DCD cholangiopathy.
  • Involvement of warm perfusion techniques may improve graft utilization.
  • Further investigation into novel perfusion strategies is warranted.
Abstract