Cargando…

Bile acids decrease intracellular bilirubin levels in the cholestatic liver: implications for bile acid-mediated oxidative stress

High plasma concentrations of bile acids (BA) and bilirubin are hallmarks of cholestasis. BA are implicated in the pathogenesis of cholestatic liver damage through mechanisms involving oxidative stress, whereas bilirubin is a strong antioxidant. We evaluated the roles of bilirubin and BA on mediatin...

Descripción completa

Detalles Bibliográficos
Autores principales: Muchova, Lucie, Vanova, Katerina, Zelenka, Jaroslav, Lenicek, Martin, Petr, Tomas, Vejrazka, Martin, Sticova, Eva, Vreman, Hendrik Jan, Wong, Ronald James, Vitek, Libor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3822628/
https://www.ncbi.nlm.nih.gov/pubmed/20518850
http://dx.doi.org/10.1111/j.1582-4934.2010.01098.x
_version_ 1782290435124756480
author Muchova, Lucie
Vanova, Katerina
Zelenka, Jaroslav
Lenicek, Martin
Petr, Tomas
Vejrazka, Martin
Sticova, Eva
Vreman, Hendrik Jan
Wong, Ronald James
Vitek, Libor
author_facet Muchova, Lucie
Vanova, Katerina
Zelenka, Jaroslav
Lenicek, Martin
Petr, Tomas
Vejrazka, Martin
Sticova, Eva
Vreman, Hendrik Jan
Wong, Ronald James
Vitek, Libor
author_sort Muchova, Lucie
collection PubMed
description High plasma concentrations of bile acids (BA) and bilirubin are hallmarks of cholestasis. BA are implicated in the pathogenesis of cholestatic liver damage through mechanisms involving oxidative stress, whereas bilirubin is a strong antioxidant. We evaluated the roles of bilirubin and BA on mediating oxidative stress in rats following bile duct ligation (BDL). Adult female Wistar and Gunn rats intraperitoneally anaesthetized with ketamine and xylazine underwent BDL or sham operation. Cholestatic markers, antioxidant capacity, lipid peroxidation and heme oxygenase (HO) activity were determined in plasma and/or liver tissue 5 days after surgery. HepG2-rNtcp cells were used for in vitro experiments. Plasma bilirubin levels in control and BDL animals positively correlated with plasma antioxidant capacity. Peroxyl radical scavenging capacity was significantly higher in the plasma of BDL Wistar rats (210 ± 12%, P < 0.0001) compared to controls, but not in the liver tissues. Furthermore after BDL, lipid peroxidation in the livers increased (179 ± 37%, P < 0.01), whereas liver HO activity significantly decreased to 61% of control levels (P < 0.001). Addition of taurocholic acid (TCA, ≥50 μmol/l) to liver homogenates increased lipid peroxidation (P < 0.01) in Wistar, but not in Gunn rats or after the addition of bilirubin. In HepG2-rNtcp cells, TCA decreased both HO activity and intracellular bilirubin levels. We conclude that even though plasma bilirubin is a marker of cholestasis and hepatocyte dysfunction, it is also an endogenous antioxidant, which may counteract the pro-oxidative effects of BA in circulation. However, in an animal model of obstructive cholestasis, we found that BA compromise intracellular bilirubin levels making hepatocytes more susceptible to oxidative damage.
format Online
Article
Text
id pubmed-3822628
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Blackwell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-38226282015-04-06 Bile acids decrease intracellular bilirubin levels in the cholestatic liver: implications for bile acid-mediated oxidative stress Muchova, Lucie Vanova, Katerina Zelenka, Jaroslav Lenicek, Martin Petr, Tomas Vejrazka, Martin Sticova, Eva Vreman, Hendrik Jan Wong, Ronald James Vitek, Libor J Cell Mol Med Articles High plasma concentrations of bile acids (BA) and bilirubin are hallmarks of cholestasis. BA are implicated in the pathogenesis of cholestatic liver damage through mechanisms involving oxidative stress, whereas bilirubin is a strong antioxidant. We evaluated the roles of bilirubin and BA on mediating oxidative stress in rats following bile duct ligation (BDL). Adult female Wistar and Gunn rats intraperitoneally anaesthetized with ketamine and xylazine underwent BDL or sham operation. Cholestatic markers, antioxidant capacity, lipid peroxidation and heme oxygenase (HO) activity were determined in plasma and/or liver tissue 5 days after surgery. HepG2-rNtcp cells were used for in vitro experiments. Plasma bilirubin levels in control and BDL animals positively correlated with plasma antioxidant capacity. Peroxyl radical scavenging capacity was significantly higher in the plasma of BDL Wistar rats (210 ± 12%, P < 0.0001) compared to controls, but not in the liver tissues. Furthermore after BDL, lipid peroxidation in the livers increased (179 ± 37%, P < 0.01), whereas liver HO activity significantly decreased to 61% of control levels (P < 0.001). Addition of taurocholic acid (TCA, ≥50 μmol/l) to liver homogenates increased lipid peroxidation (P < 0.01) in Wistar, but not in Gunn rats or after the addition of bilirubin. In HepG2-rNtcp cells, TCA decreased both HO activity and intracellular bilirubin levels. We conclude that even though plasma bilirubin is a marker of cholestasis and hepatocyte dysfunction, it is also an endogenous antioxidant, which may counteract the pro-oxidative effects of BA in circulation. However, in an animal model of obstructive cholestasis, we found that BA compromise intracellular bilirubin levels making hepatocytes more susceptible to oxidative damage. Blackwell Publishing Ltd 2011-05 2010-05-28 /pmc/articles/PMC3822628/ /pubmed/20518850 http://dx.doi.org/10.1111/j.1582-4934.2010.01098.x Text en © 2011 The Authors Journal of Cellular and Molecular Medicine © 2011 Foundation for Cellular and Molecular Medicine/Blackwell Publishing Ltd
spellingShingle Articles
Muchova, Lucie
Vanova, Katerina
Zelenka, Jaroslav
Lenicek, Martin
Petr, Tomas
Vejrazka, Martin
Sticova, Eva
Vreman, Hendrik Jan
Wong, Ronald James
Vitek, Libor
Bile acids decrease intracellular bilirubin levels in the cholestatic liver: implications for bile acid-mediated oxidative stress
title Bile acids decrease intracellular bilirubin levels in the cholestatic liver: implications for bile acid-mediated oxidative stress
title_full Bile acids decrease intracellular bilirubin levels in the cholestatic liver: implications for bile acid-mediated oxidative stress
title_fullStr Bile acids decrease intracellular bilirubin levels in the cholestatic liver: implications for bile acid-mediated oxidative stress
title_full_unstemmed Bile acids decrease intracellular bilirubin levels in the cholestatic liver: implications for bile acid-mediated oxidative stress
title_short Bile acids decrease intracellular bilirubin levels in the cholestatic liver: implications for bile acid-mediated oxidative stress
title_sort bile acids decrease intracellular bilirubin levels in the cholestatic liver: implications for bile acid-mediated oxidative stress
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3822628/
https://www.ncbi.nlm.nih.gov/pubmed/20518850
http://dx.doi.org/10.1111/j.1582-4934.2010.01098.x
work_keys_str_mv AT muchovalucie bileacidsdecreaseintracellularbilirubinlevelsinthecholestaticliverimplicationsforbileacidmediatedoxidativestress
AT vanovakaterina bileacidsdecreaseintracellularbilirubinlevelsinthecholestaticliverimplicationsforbileacidmediatedoxidativestress
AT zelenkajaroslav bileacidsdecreaseintracellularbilirubinlevelsinthecholestaticliverimplicationsforbileacidmediatedoxidativestress
AT lenicekmartin bileacidsdecreaseintracellularbilirubinlevelsinthecholestaticliverimplicationsforbileacidmediatedoxidativestress
AT petrtomas bileacidsdecreaseintracellularbilirubinlevelsinthecholestaticliverimplicationsforbileacidmediatedoxidativestress
AT vejrazkamartin bileacidsdecreaseintracellularbilirubinlevelsinthecholestaticliverimplicationsforbileacidmediatedoxidativestress
AT sticovaeva bileacidsdecreaseintracellularbilirubinlevelsinthecholestaticliverimplicationsforbileacidmediatedoxidativestress
AT vremanhendrikjan bileacidsdecreaseintracellularbilirubinlevelsinthecholestaticliverimplicationsforbileacidmediatedoxidativestress
AT wongronaldjames bileacidsdecreaseintracellularbilirubinlevelsinthecholestaticliverimplicationsforbileacidmediatedoxidativestress
AT viteklibor bileacidsdecreaseintracellularbilirubinlevelsinthecholestaticliverimplicationsforbileacidmediatedoxidativestress