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低温氧合机器灌注对冷保存大鼠肝脏的挽救作用。

Rescue of the cold preserved rat liver by hypothermic oxygenated machine perfusion.

作者信息

Dutkowski P, Graf R, Clavien P A

机构信息

Department of Visceral and Transplantation Surgery, University Hospital Zürich, Switzerland.

出版信息

Am J Transplant. 2006 May;6(5 Pt 1):903-12. doi: 10.1111/j.1600-6143.2006.01264.x.

Abstract

The aim of the study was to investigate whether hypothermic oxygenated liver perfusion after cold liver preservation resuscitated metabolic parameters and whether this treatment had a benefit for liver viability upon reperfusion. We preserved rat livers either by cold storage (UW) for 10 h, or by perfusion for 3 h (oxygenated modified UW) after 10 h cold storage. We assessed viability of livers after preservation and after ischemic rewarming+normothermic reperfusion ex vivo. Ten hour cold storage reduced mitochondrial cytochrome oxidase and metabolically depleted the livers. Oxygenated perfusion after cold storage resulted in uploaded cellular energy charge and oxidized mitochondrial cytochrome oxidase. Reperfusion after 10 h cold storage increased formation of superoxid anions, release of cytosolic LDH, lipid peroxidation, caspase activities and led to disruption of sinusoidal endothelial cells. In contrast, reperfusion after 10 h cold storage+3 h hypothermic oxygenated perfusion resulted in no changes of lipid peroxidation, bile flow, energy charge, total glutathione, LDH release and of caspase activation, as compared to fresh resected livers. This study demonstrates, that a metabolically depleted liver due to cold storage can be energy recharged by short-termed cold machine perfusion. The machine perfused graft exhibited improved viability and functional integrity.

摘要

本研究的目的是调查冷肝保存后低温氧合肝灌注是否能恢复代谢参数,以及这种治疗对再灌注时肝脏活力是否有益。我们将大鼠肝脏通过冷保存(UW液)10小时,或在冷保存10小时后通过灌注3小时(氧合改良UW液)进行保存。我们评估了保存后以及离体缺血复温+常温再灌注后肝脏的活力。10小时的冷保存降低了线粒体细胞色素氧化酶水平并使肝脏代谢耗竭。冷保存后的氧合灌注导致细胞能量电荷增加以及线粒体细胞色素氧化酶氧化。10小时冷保存后的再灌注增加了超氧阴离子的形成、胞质乳酸脱氢酶的释放、脂质过氧化、半胱天冬酶活性,并导致肝血窦内皮细胞破坏。相比之下,10小时冷保存+3小时低温氧合灌注后的再灌注与新鲜切除的肝脏相比,脂质过氧化、胆汁流量、能量电荷、总谷胱甘肽、乳酸脱氢酶释放和半胱天冬酶激活均无变化。本研究表明,因冷保存而代谢耗竭的肝脏可通过短期冷机器灌注进行能量补充。机器灌注的移植物表现出更好的活力和功能完整性。

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