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Article ; Online: N-acetylcysteine

George Clarke / Jingwen Mao / Yiyu Fan / Angus Hann / Amita Gupta / Anisa Nutu / Erwin Buckel / Kayani Kayani / Nicholas Murphy / Mansoor N. Bangash / Anna L. Casey / Isla Wootton / Alexander J. Lawson / Bobby V. M. Dasari / M. Thamara P. R. Perera / Hynek Mergental / Simon C. Afford

Scientific Reports, Vol 13, Iss 1, Pp 1-

a novel approach to methaemoglobinaemia in normothermic liver machine perfusion

2023  Volume 8

Abstract: Abstract Extended duration of normothermic machine perfusion (NMP) provides opportunities to resuscitate suboptimal donor livers. This intervention requires adequate oxygen delivery typically provided by a blood-based perfusion solution. Methaemoglobin ( ... ...

Abstract Abstract Extended duration of normothermic machine perfusion (NMP) provides opportunities to resuscitate suboptimal donor livers. This intervention requires adequate oxygen delivery typically provided by a blood-based perfusion solution. Methaemoglobin (MetHb) results from the oxidation of iron within haemoglobin and represents a serious problem in perfusions lasting > 24 h. We explored the effects of anti-oxidant, N-acetylcysteine (NAC) on the accumulation of methaemoglobin. NMP was performed on nine human donor livers declined for transplantation: three were perfused without NAC (no-NAC group), and six organs perfused with an initial NAC bolus, followed by continuous infusion (NAC group), with hourly methaemoglobin perfusate measurements. In-vitro experiments examined the impact of NAC (3 mg) on red cells (30 ml) in the absence of liver tissue. The no-NAC group sustained perfusions for an average of 96 (range 87–102) h, universally developing methaemoglobinaemia (≥ 2%) observed after an average of 45 h, with subsequent steep rise. The NAC group was perfused for an average of 148 (range 90–184) h. Only 2 livers developed methaemoglobinaemia (peak MetHb of 6%), with an average onset of 116.5 h. Addition of NAC efficiently limits formation and accumulation of methaemoglobin during NMP, and allows the significant extension of perfusion duration.
Keywords Medicine ; R ; Science ; Q
Subject code 610
Language English
Publishing date 2023-11-01T00:00:00Z
Publisher Nature Portfolio
Document type Article ; Online
Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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