Integrated Metabolic Spatial-Temporal Model for the Prediction of Ammonia Detoxification During Liver Damage and Regeneration

被引:99
作者
Schliess, Freimut [1 ]
Hoehme, Stefan [2 ]
Henkel, Sebastian G. [4 ]
Ghallab, Ahmed [5 ,9 ]
Driesch, Dominik [4 ]
Boettger, Jan [3 ]
Guthke, Reinhard [6 ]
Pfaff, Michael [4 ]
Hengstler, Jan G. [5 ]
Gebhardt, Rolf [3 ]
Haeussinger, Dieter [1 ]
Drasdo, Dirk [2 ,7 ,8 ]
Zellmer, Sebastian [3 ]
机构
[1] Univ Dusseldorf, Clin Gastroenterol Hepatol & Infectiol, Dusseldorf, Germany
[2] Univ Leipzig, Interdisciplinary Ctr Bioinformat, D-04109 Leipzig, Germany
[3] Univ Leipzig, Fac Med, Inst Biochem, D-04109 Leipzig, Germany
[4] BioControl Jena GmbH, Jena, Germany
[5] Leibniz Res Ctr Working Environm & Human Factors, Dortmund, Germany
[6] Hans Knoell Inst, Leibniz Inst Nat Prod Res & Infect Biol, Jena, Germany
[7] INRIA, F-8153 Le Chesnay, France
[8] Univ Paris 06, Jacques Luis Lions Lab, Natl Ctr Sci Res Joint Res Unit 7598, Paris, France
[9] South Valley Univ, Fac Vet, Qena, Egypt
关键词
NATURAL-KILLER-CELLS; HEPATIC STELLATE CELLS; CENTRAL-NERVOUS-SYSTEM; T-CELLS; HEPATOCELLULAR-CARCINOMA; TUMOR-CELLS; IN-VIVO; B-VIRUS; FIBROSIS; INJURY;
D O I
10.1002/hep.27136
中图分类号
R57 [消化系及腹部疾病];
学科分类号
100201 [内科学];
摘要
The impairment of hepatic metabolism due to liver injury has high systemic relevance. However, it is difficult to calculate the impairment of metabolic capacity from a specific pattern of liver damage with conventional techniques. We established an integrated metabolic spatial-temporal model (IM) using hepatic ammonia detoxification as a paradigm. First, a metabolic model (MM) based on mass balancing and mouse liver perfusion data was established to describe ammonia detoxification and its zonation. Next, the MM was combined with a spatial-temporal model simulating liver tissue damage and regeneration after CCl4 intoxication. The resulting IM simulated and visualized whether, where, and to what extent liver damage compromised ammonia detoxification. It allowed us to enter the extent and spatial patterns of liver damage and then calculate the outflow concentrations of ammonia, glutamine, and urea in the hepatic vein. The model was validated through comparisons with (1) published data for isolated, perfused livers with and without CCl4 intoxication and (2) a set of in vivo experiments. Using the experimentally determined portal concentrations of ammonia, the model adequately predicted metabolite concentrations over time in the hepatic vein during toxin-induced liver damage and regeneration in rodents. Further simulations, especially in combination with a simplified model of blood circulation with three ammonia-detoxifying compartments, indicated a yet unidentified process of ammonia consumption during liver regeneration and revealed unexpected concomitant changes in amino acid metabolism in the liver and at extrahepatic sites. Conclusion: The IM of hepatic ammonia detoxification considerably improves our understanding of the metabolic impact of liver disease and highlights the importance of integrated modeling approaches on the way toward virtual organisms.
引用
收藏
页码:2040 / 2051
页数:12
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