首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >Modulating biochemical perturbations during 72-hour machine perfusion of kidneys: role of preservation solution.
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Modulating biochemical perturbations during 72-hour machine perfusion of kidneys: role of preservation solution.

机译:在肾脏72小时机器灌注期间调节生化扰动:保存溶液的作用。

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摘要

This study documents renal biochemistry during hypothermic machine perfusion of kidneys. It is intended to demonstrate that a comprehensive evaluation of organ viability during ex-vivo preservation is needed to increase the number of organs available for transplantation and to reduce the current renal discard rate. Porcine kidneys were hypothermically machine perfused for 72 h with either Unisol-UHK or Belzer-Machine Perfusion Solution, (Belzer-MPS). Renal perfusate samples were periodically collected and biochemically analyzed. Significant differences were measured in the renal metabolic activity between the two experimental groups while similar values for traditional parameters such as renal flow rate and vascular resistance values were recorded. The effluent of UHK perfused kidneys showed strong metabolites and NH(4)(+) dynamics (P<0.05 vs. baseline), while the Belzer-MPS kidneys metabolic activity led to little or no change of the effluent biochemistry relative to baseline.
机译:这项研究记录了肾脏低温机灌注过程中的肾脏生物化学。旨在证明需要对离体保存期间的器官生存能力进行全面评估,以增加可用于移植的器官数量并降低当前的肾脏丢弃率。猪肾脏用Unisol-UHK或Belzer-Machine灌注溶液(Belzer-MPS)低温灌注72小时。定期收集肾灌注液样品并进行生化分析。测定了两个实验组之间肾脏代谢活性的显着差异,同时记录了传统参数(如肾流速和血管阻力值)的相似值。 UHK灌注肾脏的流出物显示出强大的代谢产物和NH(4)(+)动态(与基线相比,P <0.05),而Belzer-MPS肾脏的代谢活性导致流出物生化相对于基线几乎没有变化。

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