Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Oxidative stress plays a major role in chlorpromazine-induced cholestasis in human HepaRG cells

View through CrossRef
Abstract Drugs induce cholestasis by diverse and still poorly understood mechanisms in humans. Early hepatic effects of chlorpromazine (CPZ), a neuroleptic drug known for years to induce intrahepatic cholestasis, were investigated using the differentiated human hepatoma HepaRG cells. Generation of reactive oxygen species (ROS) was detected as early as 15 minutes after CPZ treatment and was associated with an altered mitochondrial membrane potential and disruption of the pericanalicular distribution of F-actin. Inhibition of [3H]-taurocholic acid efflux was observed after 30 minutes and was mostly prevented by N-acetyl cysteine (NAC) cotreatment, indicating a major role of oxidative stress in CPZ-induced bile acid (BA) accumulation. Moreover, 24-hour treatment with CPZ decreased messenger RNA (mRNA) expression of the two main canalicular bile transporters, bile salt export pump (BSEP) and multidrug resistance protein 3 (MDR3). Additional CPZ effects included inhibition of Na+-dependent taurocholic cotransporting polypeptide (NTCP) expression and activity, multidrug resistance-associated protein 4 (MRP4) overexpression and CYP8B1 inhibition that are involved in BA uptake, basolateral transport, and BA synthesis, respectively. These latter events likely represent hepatoprotective responses which aim to reduce intrahepatic accumulation of toxic BA. Compared to CPZ effects, overloading of HepaRG cells with high concentrations of cholic and chenodeoxycholic acids induced a delayed oxidative stress and, similarly, after 24 hours it down-regulated BSEP and MDR3 in parallel to a decrease of NTCP and CYP8B1 and an increase of MRP4. By contrast, low BA concentrations up-regulated BSEP and MDR3 in the absence of oxidative stress. Conclusion : These data provide evidence that, among other mechanisms, oxidative stress plays a major role as both a primary causal and an aggravating factor in the early CPZ-induced intrahepatic cholestasis in human hepatocytes.
Title: Oxidative stress plays a major role in chlorpromazine-induced cholestasis in human HepaRG cells
Description:
Abstract Drugs induce cholestasis by diverse and still poorly understood mechanisms in humans.
Early hepatic effects of chlorpromazine (CPZ), a neuroleptic drug known for years to induce intrahepatic cholestasis, were investigated using the differentiated human hepatoma HepaRG cells.
Generation of reactive oxygen species (ROS) was detected as early as 15 minutes after CPZ treatment and was associated with an altered mitochondrial membrane potential and disruption of the pericanalicular distribution of F-actin.
Inhibition of [3H]-taurocholic acid efflux was observed after 30 minutes and was mostly prevented by N-acetyl cysteine (NAC) cotreatment, indicating a major role of oxidative stress in CPZ-induced bile acid (BA) accumulation.
Moreover, 24-hour treatment with CPZ decreased messenger RNA (mRNA) expression of the two main canalicular bile transporters, bile salt export pump (BSEP) and multidrug resistance protein 3 (MDR3).
Additional CPZ effects included inhibition of Na+-dependent taurocholic cotransporting polypeptide (NTCP) expression and activity, multidrug resistance-associated protein 4 (MRP4) overexpression and CYP8B1 inhibition that are involved in BA uptake, basolateral transport, and BA synthesis, respectively.
These latter events likely represent hepatoprotective responses which aim to reduce intrahepatic accumulation of toxic BA.
Compared to CPZ effects, overloading of HepaRG cells with high concentrations of cholic and chenodeoxycholic acids induced a delayed oxidative stress and, similarly, after 24 hours it down-regulated BSEP and MDR3 in parallel to a decrease of NTCP and CYP8B1 and an increase of MRP4.
By contrast, low BA concentrations up-regulated BSEP and MDR3 in the absence of oxidative stress.
Conclusion : These data provide evidence that, among other mechanisms, oxidative stress plays a major role as both a primary causal and an aggravating factor in the early CPZ-induced intrahepatic cholestasis in human hepatocytes.

Related Results

Data from Retrodifferentiation of Human Tumor Hepatocytes to Stem Cells Leads to Metabolic Reprogramming and Chemoresistance
Data from Retrodifferentiation of Human Tumor Hepatocytes to Stem Cells Leads to Metabolic Reprogramming and Chemoresistance
<div>Abstract<p>Human hepatocellular carcinoma (HCC) heterogeneity promotes recurrence and therapeutic resistance. We recently demonstrated that inflammation favors hep...
Data from Retrodifferentiation of Human Tumor Hepatocytes to Stem Cells Leads to Metabolic Reprogramming and Chemoresistance
Data from Retrodifferentiation of Human Tumor Hepatocytes to Stem Cells Leads to Metabolic Reprogramming and Chemoresistance
<div>Abstract<p>Human hepatocellular carcinoma (HCC) heterogeneity promotes recurrence and therapeutic resistance. We recently demonstrated that inflammation favors hep...
HepaRG™ Cells as a New Approach Methodology Follow Up to a Positive Response in Human TK6 Cell Micronucleus Assay: Naphthalene Case Study
HepaRG™ Cells as a New Approach Methodology Follow Up to a Positive Response in Human TK6 Cell Micronucleus Assay: Naphthalene Case Study
We are evaluating the use of metabolically competent HepaRG™ cells combined with CometChip for DNA damage and the micronucleus (MN) assay as a follow up for in vitro positive geno...
Cometary Physics Laboratory: spectrophotometric experiments
Cometary Physics Laboratory: spectrophotometric experiments
&lt;p&gt;&lt;strong&gt;&lt;span dir=&quot;ltr&quot; role=&quot;presentation&quot;&gt;1. Introduction&lt;/span&gt;&lt;/strong&...
Deciphering the role of the lncRNA TRIBAL in hepatocyte models
Deciphering the role of the lncRNA TRIBAL in hepatocyte models
Abstract We recently reported that the long non-coding RNA TRIBAL/TRIB1AL was required to sustain key hepatoc...
New Insights in Genetic Cholestasis: From Molecular Mechanisms to Clinical Implications
New Insights in Genetic Cholestasis: From Molecular Mechanisms to Clinical Implications
Cholestasis is characterised by impaired bile secretion and accumulation of bile salts in the organism. Hereditary cholestasis is a heterogeneous group of rare autosomal recessive ...
Psychotropic Medication Usage for Psychiatric Emergencies in a Tertiary Health Care Centre in Nigeria
Psychotropic Medication Usage for Psychiatric Emergencies in a Tertiary Health Care Centre in Nigeria
Background:This study documented the usage of psychotropics in patients presenting with psychiatric emergencies. The usage of psychotropic medications has to do with the prescripti...

Back to Top