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多器官体外灌注模型的开发:猪肝-肾循环 24 小时以上的结果。

The development of a multiorgan ex vivo perfused model: results with the porcine liver-kidney circuit over 24 hours.

机构信息

Department of Hepatobiliary and Pancreatic Surgery, Leicester General Hospital, University of Leicester, Leicester, UK.

出版信息

Artif Organs. 2013 May;37(5):457-66. doi: 10.1111/aor.12003. Epub 2013 Mar 13.

Abstract

We already developed an ex vivo liver-kidney model perfused for 6 h in which the kidney acted as a homeostatic organ to improve the circuit milieu compared to liver alone. In the current study, we extended the multiorgan perfusions to 24 h to evaluate the results and eventual pitfalls manifesting with longer durations. Five livers and kidneys were harvested from female pigs and perfused over 24 h. The extracorporeal circuit included a centrifugal pump, heat exchanger, and oxygenator. The primary end point of the study was the evaluation of the organ functions as gathered from biochemical and acid-base parameters. In the combined liver-kidney circuit, the organs survived and maintained an acceptable homeostasis for different lengths of time, longer for the liver (up to 19-23 h of perfusions) than the kidney (9-13 h of perfusions). Furthermore, glucose and creatinine values decreased significantly over time (from the 5th and 9th hour of perfusion onward). The addition of a kidney to the perfusion circuit improved the biochemical environment by removing excess products from ongoing metabolic processes. The consequence is a more physiological milieu that could improve results from future experimental studies. However, it is likely that long perfusions require some nutritional support over the hours to maintain the organ's vitality and functionality throughout the experiments.

摘要

我们已经开发出一种体外肝-肾模型,可以进行 6 小时的灌注,与单独的肝脏相比,肾脏可以作为一个内稳定器官来改善回路环境。在当前的研究中,我们将多器官灌注延长至 24 小时,以评估更长时间的结果和潜在问题。从雌性猪中采集了 5 个肝脏和肾脏,并进行了 24 小时的灌注。体外循环包括离心泵、热交换器和氧合器。该研究的主要终点是从生化和酸碱参数评估器官功能。在肝-肾联合回路中,器官存活并维持了可接受的内稳定状态,肝脏的存活时间(灌注 19-23 小时)长于肾脏(灌注 9-13 小时)。此外,葡萄糖和肌酐值随时间显著下降(从灌注第 5 小时和第 9 小时开始)。向灌注回路中添加一个肾脏可以通过去除正在进行的代谢过程中的多余产物来改善生化环境。其结果是更接近生理的环境,这可能会改善未来实验研究的结果。然而,长时间的灌注可能需要在数小时内提供一些营养支持,以维持器官在整个实验过程中的活力和功能。

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