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The role of preservation solution on acid-base regulation during machine perfusion of kidneys.

机译:肾脏机器灌注过程中保存液对酸碱调节的作用。

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摘要

To meet the current clinical organ demand, efficient preservation methods and solutions are needed to increase the number of viable kidneys for transplantation. In the present study, the influence of perfusion solution buffering strength on renal pH dynamics and regulation mechanisms during kidney ex vivo preservation was determined. Porcine kidneys were hypothermically machine perfused for 72 h with either Unisol(TM)-UHK or Belzer-Machine Perfusion solution, Belzer-MP solution. Renal perfusate samples were periodically collected and biochemically analyzed. The UHK solution, a Hepes-based solution (35 mM), provided a more efficient control of renal pH that, in turn, resulted in minor changes in the perfusate pH relative to baseline, in response to tissue CO(2) and HCO production. In the perfusate of Belzer-MP kidney group a wider range of pH values were recorded and a pronounced pH reduction was seen in response to significant rises in pCO(2) and HCO concentrations. The Belzer-MP solution, containing phosphate (25 mM) as its main buffer, and only 10 mM Hepes, had a greater buffering requirement to attenuate larger pH changes.
机译:为了满足当前的临床器官需求,需要有效的保存方法和解决方案以增加用于移植的存活肾脏的数量。在本研究中,确定了肾脏离体保存过程中灌注溶液缓冲强度对肾脏pH动态和调节机制的影响。用Unisol-UHK或Belzer-Machine灌注溶液,Belzer-MP溶液对猪肾进行低温热灌注72小时。定期收集肾灌注液样品并进行生化分析。 UHK解决方案(一种基于Hepes的解决方案(35 mM))提供了对肾脏pH值的更有效控制,从而响应于组织CO(2)和HCO的产生,相对于基线,灌注液的pH值发生了微小变化。 。在Belzer-MP肾脏灌流液中,记录到更大范围的pH值,并且由于pCO(2)和HCO浓度的显着升高,pH明显降低。含有磷酸盐(25 mM)作为其主要缓冲液且只有10 mM Hepes的Belzer-MP溶液具有更大的缓冲要求,以减弱较大的pH变化。

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