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通过细胞内ATP测量对大鼠进行单纯主动脉灌注后肾脏和肝脏活力的研究。

Study of kidney and liver viability in the rat after exclusive aortic perfusion using intracellular ATP measurement.

作者信息

Bittard H, Chiche L, Moukarzel M, Douguet D, Benoit G

机构信息

Laboratory of Experimental Surgery, University of Paris, Bicêtre Hospital, France.

出版信息

Urol Res. 1992;20(6):415-7. doi: 10.1007/BF00294498.

Abstract

To find whether the liver can be procured after exclusive aortic perfusion, three organ perfusion models were used in three groups of donor rats. Group 1 underwent liver wash-out via the portal vein; in group 2, the kidneys alone were perfused via the aorta; and group 3 underwent simultaneous aortic perfusion of liver and kidneys. All perfusion flow rates in the three groups were adjusted to physiological values. Harvested organs were transplanted and recipient animals were killed 4 h after transplantation to study liver and kidney viability by using intracellular ATP measurement. Liver ATP was lower (P < 0.005) in the portal perfusion group (group 1: 1.396 +/- 0.412) than in the aortic perfusion group (group 3: 2.181 +/- 0.061). Kidney ATP was comparable in groups 2 and 3:1.066 +/- 0.09 vs 1.059 +/- 0.273 (mumol/g) tissue). Liver cooling was quicker with portal perfusion than with the aortic flush (20 degrees C in 20 s vs 15 degrees C in 60 s). Aortic perfusion at a physiologic flow rate has no detrimental effect on renal viability studied by intracellular ATP measurement. We conclude that liver cooling via the aortic route only is a good alternative to portal perfusion and seems to give good preservation. Application of this observation to emergency procurement in humans is still the subject of controversy.

摘要

为了探究在单纯主动脉灌注后肝脏是否可获取,在三组供体大鼠中使用了三种器官灌注模型。第1组通过门静脉进行肝脏冲洗;第2组仅通过主动脉灌注肾脏;第3组同时进行肝脏和肾脏的主动脉灌注。三组的所有灌注流速均调整至生理值。收获的器官进行移植,移植后4小时处死受体动物,通过测量细胞内三磷酸腺苷(ATP)来研究肝脏和肾脏的活力。门静脉灌注组(第1组:1.396±0.412)的肝脏ATP低于主动脉灌注组(第3组:2.181±0.061)(P<0.005)。第2组和第3组的肾脏ATP相当:分别为1.066±0.09与1.059±0.273(微摩尔/克组织)。门静脉灌注时肝脏降温比主动脉冲洗更快(20秒内降至20℃,而60秒内降至15℃)。通过细胞内ATP测量研究发现,以生理流速进行主动脉灌注对肾脏活力没有不利影响。我们得出结论,仅通过主动脉途径进行肝脏降温是门静脉灌注的一个良好替代方法,似乎能提供良好的保存效果。将这一观察结果应用于人类紧急获取器官仍存在争议。

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