Nyberg S L, Mann H J, Remmel R P, Hu W S, Cerra F B
Department of Surgery, University of Minnesota, Minneapolis.
ASAIO J. 1993 Jul-Sep;39(3):M252-6.
Lidocaine is a sensitive substrate for evaluating liver P450 function. In this study, metabolism of lidocaine by xenogeneic hepatocytes in a hollow fiber, bioartificial liver was measured under in vitro conditions (n = 6) and in an anhepatic rabbit model. Animals in the treatment group (n = 6) received hemoperfusion by a bioartificial liver that contained 100 million rat hepatocytes. Other anhepatic rabbits received no hemoperfusion (n = 3) or a bioartificial liver with no cells (n = 3). Lidocaine clearance was 7.0 +/- 0.6 ml/min, and the half-life of lidocaine was 5.6 +/- 0.8 hr under in vitro conditions. Conversion of lidocaine to 3-hydroxy-lidocaine was confirmed in vitro and accounted for 46% of lidocaine elimination in the hepatocyte bioartificial liver. During in vivo application of the bioartificial liver, pharmacokinetic parameters of lidocaine metabolism, including drug half-life and metabolite formation, were significantly improved in anhepatic rabbits. 3-Hydroxy-lidocaine profiles verified the activity of a P450 isozyme expressed preferentially by rat hepatocytes in the bioartificial liver. We conclude that hepatic P450 activity was provided by xenogeneic hepatocytes during in vitro and in vivo applications of a bioartificial liver.
利多卡因是评估肝脏P450功能的敏感底物。在本研究中,在体外条件下(n = 6)以及在无肝兔模型中,对中空纤维生物人工肝中异种肝细胞对利多卡因的代谢进行了测定。治疗组的动物(n = 6)接受含有1亿个大鼠肝细胞的生物人工肝进行血液灌注。其他无肝兔未接受血液灌注(n = 3)或接受无细胞的生物人工肝(n = 3)。在体外条件下,利多卡因清除率为7.0±0.6 ml/min,利多卡因半衰期为5.6±0.8小时。在体外证实了利多卡因向3-羟基利多卡因的转化,且在肝细胞生物人工肝中,该转化占利多卡因消除量的46%。在生物人工肝的体内应用过程中,无肝兔体内利多卡因代谢的药代动力学参数,包括药物半衰期和代谢物形成,均得到显著改善。3-羟基利多卡因谱证实了生物人工肝中大鼠肝细胞优先表达的一种P450同工酶的活性。我们得出结论,在生物人工肝的体外和体内应用过程中,异种肝细胞提供了肝脏P450活性。