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Functional Evaluation of a Bioartificial Liver Support System Using Immobilized Hepatocyte Spheroids in a Porcine Model of Acute Liver Failure

机译:在急性肝功能衰竭猪模型中使用固定化的肝细胞球体的生物人工肝支持系统的功能评估。

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摘要

Bioartificial livers (BAL) may offer acute liver failure (ALF) patients an opportunity for cure without liver transplantation. We evaluated the efficacy of a spheroid-based BAL system, containing aggregates of porcine hepatocytes, in a porcine model of ALF. ALF pigs were divided into three groups. The control group consisted of treatment naïve pigs (n = 5), blank group consisted of pigs that were attached to the BAL system not containing hepatocytes for 12 hours (n = 5) and BAL group consisted of pigs that were attached to the BAL containing hepatocytes for 12 hours (n = 5). Increase in serum ammonia levels were significantly greater in the blank group (P < 0.01) and control group (P < 0.01), compared to the BAL group during the treatment period. Increase in ICP was significantly greater in the control group compared to the BAL group (P = 0.01). Survival was significantly prolonged in the BAL group compared to the blank group (P = 0.03). A BAL system with a bioreactor containing hepatocyte spheroids showed effective clearance of serum ammonia, preservation of renal function and delayed ICP increase in a porcine model of ALF.
机译:生物人工肝(BAL)可能为急性肝衰竭(ALF)患者提供无需肝移植的治愈机会。我们在ALF的猪模型中评估了基于球体的BAL系统的功效,该系统包含猪肝细胞的聚集体。将ALF猪分为三组。对照组由未治疗的猪组成(n = 5),空白组由与BAL系统相连且不含有肝细胞达12小时的猪(n = 5)组成,BAL组由与含有BAL系统相连的猪组成。肝细胞持续12小时(n = 5)。在治疗期间,空白组(P <0.01)和对照组(P <0.01)的血清氨水水平显着高于BAL组。与BAL组相比,对照组ICP的增加显着更大(P = 0.01)。与空白组相比,BAL组的生存期显着延长(P = 0.03)。在含有ALF的猪模型中,带有包含肝细胞球体的生物反应器的BAL系统显示出有效清除血清氨,保留肾功能和延迟ICP增加的功能。

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