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Evaluation Methods and Design for Bioartificial Liver Based on Perfusion Model

机译:基于灌注模型的生物人工肝评价方法与设计

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摘要

A bioartificial liver (BAL) is a medical device entrapping living hepatocytes or immortalized cells derived from hepatocytes. Many efforts have already been made to maintain the functions of the hepatocytes in a BAL device over a long term. However, there is still some uncertainty as to their efficacy, and their limitations are unclear. Therefore, it is important to quantitatively evaluate the metabolic functions of a BAL. In previous studies on in vitro BAL devices, two test methods, an initial bolus loading and constant-rate infusion plus initial bolus loading, were theoretically carried out to obtain physiologic data on drugs. However, in the current study, the same two methods were used as a perfusion model and derived the same clearance characterized by an interrelationship between the perfusate flow rate and intrinsic clearance. The interrelationship indicated that the CL increased with an increasing perfusate flow rate and approached its maximum value, i.e. intrinsic clearance. In addition, to set up an in vivo BAL system, the toxic plateau levels in the BAL system were calculated for both series and parallel circuit models. The series model had a lower plateau level than the parellel model. The difference in the toxic plateau levels between the parallel and series models increased with an increasing number of BAL cartridges.
机译:生物人工肝(BAL)是一种捕获活体肝细胞或衍生自肝细胞的永生细胞的医疗设备。为了长期保持BAL装置中的肝细胞功能,已经进行了许多努力。但是,它们的功效仍存在一些不确定性,其局限性尚不清楚。因此,重要的是定量评估BAL的代谢功能。在先前对体外BAL装置的研究中,理论上进行了两种测试方法,即初始推注载荷和恒定速率输注加上初始推注载荷,以获得有关药物的生理数据。但是,在当前的研究中,将相同的两种方法用作灌注模型,并得出相同的清除率,其特征在于灌注液流速与固有清除率之间存在相互关系。相互关系表明,CL随着灌注液流速的增加而增加,并接近其最大值,即固有清除率。另外,为了建立体内BAL系统,针对串联和并联电路模型都计算了BAL系统中的毒性平台水平。系列模型比并行模型具有较低的平稳水平。平行和串联型号之间的毒性平台水平差异随着BAL滤筒数量的增加而增加。

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