't Hart Nils A, van der Plaats Arjan, Faber Alexander, Leuvenink Henri G D, Olinga Peter, Wiersema-Buist Janneke, Verkerke Gijsbertus J, Rakhorst Gerhard, Ploeg Rutger J
Surgery Research Laboratory, University of Groningen, Groningen, The Netherlands.
Liver Transpl. 2005 Nov;11(11):1403-11. doi: 10.1002/lt.20510.
Hypothermic machine perfusion (HMP) of abdominal organs is shown to be superior compared to cold storage. However, the question remains if oxygenation is required during preservation as oxygen is essential for energy resynthesis but also generates toxic reactive oxygen species (ROS). To determine if oxygenation should be used during HMP, urea-synthesis rate, adenosine triphosphate (ATP), and generation of ROS were studied in an in vitro model, modeling ischemia-reperfusion injury. Furthermore, expression of uncoupling protein-2 (UCP-2) mRNA was assessed since UCP-2 is a potentially protective protein against ROS. Rat liver slices were preserved for 0, 24, and 48 hr in University of Wisconsin machine perfusion solution (UW-MP) with 0%, 21%, or 95% oxygen at 0-4 degrees C and reperfused for 24 hours. In the 0% and 95% groups, an increase of ROS was found after cold storage in UW-MP. After slice reperfusion, only the 0% oxygen group showed higher levels. The 0% group showed a lower urea-synthesis rate as well as lower ATP levels. mRNA upregulation of UCP-2 was, in contrast to kidney mRNA studies, not observed. In conclusion, oxygenation of UW-MP gave better results. This study also shows that ROS formation occurs during hypothermic preservation and the liver is not protected by UCP-2. We conclude that saturation of UW-MP with 21% oxygen allows optimal preservation results.
与冷藏相比,腹部器官的低温机器灌注(HMP)已显示出优势。然而,仍存在一个问题,即在保存过程中是否需要氧合,因为氧对于能量再合成至关重要,但也会产生活性氧(ROS)这种有毒物质。为了确定在HMP过程中是否应使用氧合,在一个模拟缺血再灌注损伤的体外模型中研究了尿素合成率、三磷酸腺苷(ATP)和ROS的生成。此外,评估了解偶联蛋白2(UCP - 2)mRNA的表达,因为UCP - 2是一种潜在的抗ROS保护蛋白。大鼠肝切片在0 - 4摄氏度下于含0%、21%或95%氧气的威斯康星大学机器灌注液(UW - MP)中保存0、24和48小时,然后再灌注24小时。在0%和95%氧气组中,UW - MP冷藏后发现ROS增加。切片再灌注后,只有0%氧气组显示出更高水平。0%氧气组的尿素合成率和ATP水平较低。与肾脏mRNA研究不同,未观察到UCP - 2的mRNA上调。总之,UW - MP的氧合产生了更好的结果。这项研究还表明,在低温保存过程中会形成ROS,并且肝脏不受UCP - 2的保护。我们得出结论,用21%氧气饱和UW - MP可获得最佳保存效果。