Pathophysiology and fate of hepatocytes in a mouse model of mitochondrial hepatopathies

被引:39
作者
Diaz, F. [1 ]
Garcia, S. [1 ]
Hernandez, D. [1 ]
Regev, A. [1 ]
Rebelo, A. [1 ]
Oca-Cossio, J. [1 ]
Moraes, C. T. [1 ]
机构
[1] Univ Miami, Dept Neurol, Miller Sch Med, Miami, FL 33136 USA
关键词
D O I
10.1136/gut.2006.119180
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Background: Although oxidative phosphorylation defects can affect the liver, these conditions are poorly understood, partially because of the lack of animal models. Aims: To create and characterise the pathophysiology of mitochondrial hepatopathies in a mouse model. Methods: A mouse model of mitochondrial hepatopathies was created by the conditional liver knockout (KO) of the COX10 gene, which is required for cytochrome c oxidase (COX) function. The onset and progression of biochemical, molecular and clinical phenotypes were analysed in several groups of animals, mostly at postnatal days 23, 56, 78 and 155. Results: Biochemical and histochemical analysis of liver samples from 23-56-day-old KO mice showed liver dysfunction, a severe COX deficiency, marked mitochondrial proliferation and lipid accumulation. Despite these defects, the COX-deficient hepatocytes were not immediately eliminated, and apoptosis followed by liver regeneration could be observed only at age 78 days. Hepatocytes from 56-78-day-old KO mice survived despite very low COX activity but showed a progressive depletion of glycogen stores. In most animals, hepatocytes that escaped COX10 ablation were able to proliferate and completely regenerate the liver between days 78 and 155. Conclusions: The results showed that when faced with a severe oxidative phosphorylation defect, hepatocytes in vivo can rely on glycolysis/glycogenolysis for their bioenergetic needs for relatively long periods. Ultimately, defective hepatocytes undergo apoptosis and are replaced by COX-positive cells first observed in the perivascular regions.
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页码:232 / 242
页数:11
相关论文
共 40 条
  • [21] The ADP/ATP translocator is not essential for the mitochondrial permeability transition pore
    Kokoszka, JE
    Waymire, KG
    Levy, SE
    Sligh, JE
    Cal, JY
    Jones, DP
    MacGregor, GR
    Wallace, DC
    [J]. NATURE, 2004, 427 (6973) : 461 - 465
  • [22] Anti-apoptotic function of gelsolin in Fas antibody-induced liver failure in vivo
    Leifeld, L
    Fink, K
    Debska, G
    Fielenbach, M
    Schmitz, V
    Sauerbruch, T
    Spengler, U
    [J]. AMERICAN JOURNAL OF PATHOLOGY, 2006, 168 (03) : 778 - 785
  • [23] Ultrastructure of the Spermatozoa from a Florida Manatee (Trichechus manatus latirostris)
    Miller, DL
    Dougherty, MM
    Decker, SJ
    Bossart, GD
    [J]. ANATOMIA HISTOLOGIA EMBRYOLOGIA-JOURNAL OF VETERINARY MEDICINE SERIES C, 2001, 30 (04): : 253 - 256
  • [24] NIEMINEN AL, 1994, AM J PHYSIOL, V267, P67
  • [25] In situ hybridization demonstration of albumin mRNA in B6C3F1 murine liver and hepatocellular neoplasms
    Pilling, AM
    EndersbyWood, HJ
    Jones, SA
    Williams, TC
    [J]. VETERINARY PATHOLOGY, 1997, 34 (06) : 585 - 591
  • [26] Postic C, 2000, GENESIS, V26, P149, DOI 10.1002/(SICI)1526-968X(200002)26:2<149::AID-GENE16>3.0.CO
  • [27] 2-V
  • [28] Dual roles for glucokinase in glucose homeostasis as determined by liver and pancreatic β cell-specific gene knock-outs using Cre recombinase
    Postic, C
    Shiota, M
    Niswender, KD
    Jetton, TL
    Chen, YJ
    Moates, JM
    Shelton, KD
    Lindner, J
    Cherrington, AD
    Magnuson, MA
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (01) : 305 - 315
  • [29] DEPLETION OF ATP BUT NOT OF GSH AFFECTS VIABILITY OF RAT HEPATOCYTES
    REDEGELD, FAM
    MOISON, RMW
    KOSTER, AS
    NOORDHOEK, J
    [J]. EUROPEAN JOURNAL OF PHARMACOLOGY-ENVIRONMENTAL TOXICOLOGY AND PHARMACOLOGY SECTION, 1992, 228 (04): : 229 - 236
  • [30] Analyses of hepatocellular proliferation in a mouse model of α-1-antitrypsin deficiency
    Rudnick, DA
    Liao, YJ
    An, JK
    Muglia, LJ
    Perlmutter, DH
    Teckman, JH
    [J]. HEPATOLOGY, 2004, 39 (04) : 1048 - 1055