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DHEA Protects Human Cholangiocytes and Hepatocytes against Apoptosis and Oxidative Stress

Primary biliary cholangitis (PBC) is a rare chronic cholestatic and immune-mediated liver disease of unknown aetiology that targets intrahepatic bile duct cells (cholangiocytes) and primarily affects postmenopausal women, when their estrogen levels sharply decrease. An impaired cholangiocyte respons...

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Autores principales: Kilanczyk, Ewa, Ruminkiewicz, Dagmara, Banales, Jesus M., Milkiewicz, Piotr, Milkiewicz, Małgorzata
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8947473/
https://www.ncbi.nlm.nih.gov/pubmed/35326489
http://dx.doi.org/10.3390/cells11061038
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author Kilanczyk, Ewa
Ruminkiewicz, Dagmara
Banales, Jesus M.
Milkiewicz, Piotr
Milkiewicz, Małgorzata
author_facet Kilanczyk, Ewa
Ruminkiewicz, Dagmara
Banales, Jesus M.
Milkiewicz, Piotr
Milkiewicz, Małgorzata
author_sort Kilanczyk, Ewa
collection PubMed
description Primary biliary cholangitis (PBC) is a rare chronic cholestatic and immune-mediated liver disease of unknown aetiology that targets intrahepatic bile duct cells (cholangiocytes) and primarily affects postmenopausal women, when their estrogen levels sharply decrease. An impaired cholangiocyte response to estrogen characterizes the terminal stage of the disease, as this is when an inefficiency of cholangiocyte proliferation, in balancing the loss of intrahepatic bile ducts, is observed. Here, we report that the estrogen precursor dehydroepiandrosterone (DHEA) and its sulfate metabolites, DHEA-S and 17 β-estradiol, enhance the proliferation of cholangiocytes and hepatocytes in vitro. Flow cytometry analysis showed that DHEA and DHEA-S decreased glyco-chenodeoxycholic acid (GCDC)-driven apoptosis in cholangiocytes. Cell viability assay (MTT) indicated that ER-α, -β, and the G-protein-coupled estrogen receptor, are involved in the protection of DHEA against oxidative stress in cholangiocytes. Finally, immunoblot analysis showed an elevated level of steroid sulfatase and a reduced level of sulfotransferase 1E1 enzymes, involved in the desulfation/sulfation process of estrogens in cirrhotic PBC, and primary sclerosis cholangitis (PSC) liver tissues, another type of chronic cholestatic and immune-mediated liver disease. Taken together, these results suggest that DHEA can prevent the deleterious effects of certain potentially toxic bile acids and reactive oxygen species, delaying the onset of liver disease.
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spelling pubmed-89474732022-03-25 DHEA Protects Human Cholangiocytes and Hepatocytes against Apoptosis and Oxidative Stress Kilanczyk, Ewa Ruminkiewicz, Dagmara Banales, Jesus M. Milkiewicz, Piotr Milkiewicz, Małgorzata Cells Article Primary biliary cholangitis (PBC) is a rare chronic cholestatic and immune-mediated liver disease of unknown aetiology that targets intrahepatic bile duct cells (cholangiocytes) and primarily affects postmenopausal women, when their estrogen levels sharply decrease. An impaired cholangiocyte response to estrogen characterizes the terminal stage of the disease, as this is when an inefficiency of cholangiocyte proliferation, in balancing the loss of intrahepatic bile ducts, is observed. Here, we report that the estrogen precursor dehydroepiandrosterone (DHEA) and its sulfate metabolites, DHEA-S and 17 β-estradiol, enhance the proliferation of cholangiocytes and hepatocytes in vitro. Flow cytometry analysis showed that DHEA and DHEA-S decreased glyco-chenodeoxycholic acid (GCDC)-driven apoptosis in cholangiocytes. Cell viability assay (MTT) indicated that ER-α, -β, and the G-protein-coupled estrogen receptor, are involved in the protection of DHEA against oxidative stress in cholangiocytes. Finally, immunoblot analysis showed an elevated level of steroid sulfatase and a reduced level of sulfotransferase 1E1 enzymes, involved in the desulfation/sulfation process of estrogens in cirrhotic PBC, and primary sclerosis cholangitis (PSC) liver tissues, another type of chronic cholestatic and immune-mediated liver disease. Taken together, these results suggest that DHEA can prevent the deleterious effects of certain potentially toxic bile acids and reactive oxygen species, delaying the onset of liver disease. MDPI 2022-03-18 /pmc/articles/PMC8947473/ /pubmed/35326489 http://dx.doi.org/10.3390/cells11061038 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kilanczyk, Ewa
Ruminkiewicz, Dagmara
Banales, Jesus M.
Milkiewicz, Piotr
Milkiewicz, Małgorzata
DHEA Protects Human Cholangiocytes and Hepatocytes against Apoptosis and Oxidative Stress
title DHEA Protects Human Cholangiocytes and Hepatocytes against Apoptosis and Oxidative Stress
title_full DHEA Protects Human Cholangiocytes and Hepatocytes against Apoptosis and Oxidative Stress
title_fullStr DHEA Protects Human Cholangiocytes and Hepatocytes against Apoptosis and Oxidative Stress
title_full_unstemmed DHEA Protects Human Cholangiocytes and Hepatocytes against Apoptosis and Oxidative Stress
title_short DHEA Protects Human Cholangiocytes and Hepatocytes against Apoptosis and Oxidative Stress
title_sort dhea protects human cholangiocytes and hepatocytes against apoptosis and oxidative stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8947473/
https://www.ncbi.nlm.nih.gov/pubmed/35326489
http://dx.doi.org/10.3390/cells11061038
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