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AMC生物人工肝肝脏特异性功能的评估与改善

Assessment and improvement of liver specific function of the AMC-bioartificial liver.

作者信息

van de Kerkhove M P, Poyck P P C, van Wijk A C W A, Galavotti D, Hoekstra R, van Gulik T M, Chamuleau R A F M

机构信息

Department of Surgery (Surgical Laboratory), Academic Medical Center, University of Amsterdam, The Netherlands.

出版信息

Int J Artif Organs. 2005 Jun;28(6):617-30. doi: 10.1177/039139880502800611.

Abstract

UNLABELLED

The variety of methods for measuring bioactive mass and functionality of bioartificial livers (BAL) is confusing and prevents accurate comparison of reported data. Here we present a comparison of different hepatocyte quantification methods and propose that estimation of cell pellet volume after centrifugation generates a reliable, useful and fast method. In addition a correlation is made between several function tests performed in 26 bioreactors to assess their predictive value. The ammonia eliminating capacity was found to be most predictive for other liver functions, except for lidocaine elimination as a measure of mixed function oxidase activity, which should therefore be determined separately. The oxygen consumption test proved to be an easy and predictive parameter as well. The first generation of our BAL system needed further development to assure optimal treatment of acute liver failure (ALF) patients. Changes in the porcine hepatocyte isolation method and bioreactor loading as well as changes in bioreactor configuration, including use of different materials, resulted in a significantly improved level and maintenance of in vitro BAL function. A fourfold increase in ammonia eliminating capacity, which is only reduced to 75% after seven days of culturing, offers promising prospects for further clinical application.

CONCLUSION

The current second generation of our BAL and improvement of hepatocyte isolation and testing protocols have led to a significant increase in the level as well as the maintenance of hepatocyte specific function in our BAL. Finally, consensus on definition of the bioactive mass to be loaded in the bioreactor and insight in the variation and reliability of the functional and metabolic parameters enhances comparison of the different types of bioartificial livers presented in literature.

摘要

未标注

用于测量生物人工肝(BAL)生物活性质量和功能的方法多种多样,令人困惑,阻碍了对已报道数据的准确比较。在此,我们对不同的肝细胞定量方法进行了比较,并提出离心后估计细胞沉淀体积可产生一种可靠、有用且快速的方法。此外,我们对在26个生物反应器中进行的几种功能测试之间建立了相关性,以评估它们的预测价值。结果发现,除了作为混合功能氧化酶活性指标的利多卡因消除能力需单独测定外,氨消除能力对其他肝功能的预测性最强。耗氧试验也被证明是一个简单且具有预测性的参数。我们第一代的BAL系统需要进一步改进,以确保对急性肝衰竭(ALF)患者进行最佳治疗。猪肝细胞分离方法和生物反应器接种量的改变,以及生物反应器配置的改变,包括使用不同材料,导致体外BAL功能水平显著提高且得以维持。氨消除能力提高了四倍,培养七天后仅降至75%,为进一步临床应用提供了广阔前景。

结论

我们目前的第二代BAL以及肝细胞分离和测试方案的改进,已使我们BAL中肝细胞特异性功能的水平和维持能力显著提高。最后,对生物反应器中要接种的生物活性物质定义达成共识,以及对功能和代谢参数的变化及可靠性有深入了解,有助于比较文献中呈现的不同类型生物人工肝。

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