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Functional evaluation of a new bioartificial liver system in vitro and in vitro.

机译:在体外和体外对新型生物人工肝系统进行功能评估。

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AIM: To evaluate the functions of a new bioartificial liver (BAL) system in vitro and in vitro. METHODS: The BAL system was configured by inoculating porcine hepatocyte spheroids into the cell circuit of a hollow fiber bioreactor. In the experiments of BAL in vitro, the levels of alanine aminotransferase (ALT), total bilirubin (TB), and albumin (ALB) in the circulating hepatocyte suspension and RPMI-1640 medium were determined during 6 h of circulation in the BAL device. In the experiments of BAL in vitro, acute liver failure (ALF) model in canine was induced by an end-side portocaval shunt combined with common bile duct ligation and transaction. Blood ALT, TB and ammonia levels of ALF in canines were determined before and after BAL treatment. RESULTS: During 6 h of circulation in vitro, there was no significant change of ALT, whereas the TB and ALB levels gradually increased with time both in the hepatocyte suspension and in RPMI-1640 medium. In the BAL treatment group, blood ALT, TB and ammonia levels of ALF in canines decreased significantly. CONCLUSION: The new BAL system has the ability to perform liver functions and can be used to treat ALF.
机译:目的:在体外和体外评估新型生物人工肝(BAL)系统的功能。方法:通过将猪肝细胞球体接种到中空纤维生物反应器的细胞回路中来配置BAL系统。在体外BAL实验中,在BAL装置中循环6小时后,测定了循环肝细胞悬液和RPMI-1640培养基中丙氨酸转氨酶(ALT),总胆红素(TB)和白蛋白(ALB)的水平。在体外BAL实验中,通过门静脉分流术结合胆总管结扎和交易诱发了犬急性肝衰竭(ALF)模型。在BAL治疗之前和之后测定犬的血液ALT,TB和ALF的氨水平。结果:在体外循环6小时内,ALT没有明显变化,而肝细胞悬液和RPMI-1640培养基中的TB和ALB水平随时间逐渐增加。在BAL治疗组中,犬的血液ALT,TB和ALF的氨水平显着下降。结论:新的BAL系统具有执行肝功能的能力,可用于治疗ALF。

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