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Gut microbiota depletion aggravates bile acid-induced liver pathology in mice with a human-like bile acid composition

Cyp2c70-deficient mice have a human-like bile acid (BA) composition due to their inability to convert chenodeoxycholic acid (CDCA) into rodent-specific muricholic acids (MCAs). However, the hydrophobic BA composition in these animals is associated with liver pathology. Although Cyp2c70-ablation has...

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Autores principales: Verkade, Esther, Shen, Wenqiang, Hovingh, Milaine V., Mulder, Niels L., de Bruyn, Krisztina, Koehorst, Martijn, de Vries, Hilde D., Bloks, Vincent W., Kuipers, Folkert, de Boer, Jan Freark
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10643054/
https://www.ncbi.nlm.nih.gov/pubmed/37910096
http://dx.doi.org/10.1042/CS20230812
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author Verkade, Esther
Shen, Wenqiang
Hovingh, Milaine V.
Mulder, Niels L.
de Bruyn, Krisztina
Koehorst, Martijn
de Vries, Hilde D.
Bloks, Vincent W.
Kuipers, Folkert
de Boer, Jan Freark
author_facet Verkade, Esther
Shen, Wenqiang
Hovingh, Milaine V.
Mulder, Niels L.
de Bruyn, Krisztina
Koehorst, Martijn
de Vries, Hilde D.
Bloks, Vincent W.
Kuipers, Folkert
de Boer, Jan Freark
author_sort Verkade, Esther
collection PubMed
description Cyp2c70-deficient mice have a human-like bile acid (BA) composition due to their inability to convert chenodeoxycholic acid (CDCA) into rodent-specific muricholic acids (MCAs). However, the hydrophobic BA composition in these animals is associated with liver pathology. Although Cyp2c70-ablation has been shown to alter gut microbiome composition, the impact of gut bacteria on liver pathology in Cyp2c70(−/−) mice remains to be established. Therefore, we treated young-adult male and female wild-type (WT) and Cyp2c70(−/−) mice with antibiotics (AB) with broad specificity to deplete the gut microbiota and assessed the consequences on BA metabolism and liver pathology. Female Cyp2c70(−/−) mice did not tolerate AB treatment, necessitating premature termination of the experiment. Male Cyp2c70(−/−) mice did tolerate AB but showed markedly augmented liver pathology after 6 weeks of treatment. Dramatic downregulation of hepatic Cyp8b1 expression (−99%) caused a reduction in the proportions of 12α-hydroxylated BAs in the circulating BA pools of AB-treated male Cyp2c70(−/−) mice. Interestingly, the resulting increased BA hydrophobicity strongly correlated with various indicators of liver pathology. Moreover, genetic inactivation of Cyp8b1 in livers of male Cyp2c70(−/−) mice increased liver pathology, while addition of ursodeoxycholic acid to the diet prevented weight loss and liver pathology in AB-treated female Cyp2c70(−/−) mice. In conclusion, depletion of gut microbiota in Cyp2c70(−/−) mice aggravates liver pathology at least in part by increasing the hydrophobicity of the circulating BA pool. These findings highlight that the potential implications of AB administration to cholestatic patients should be evaluated in a systematic manner.
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spelling pubmed-106430542023-11-15 Gut microbiota depletion aggravates bile acid-induced liver pathology in mice with a human-like bile acid composition Verkade, Esther Shen, Wenqiang Hovingh, Milaine V. Mulder, Niels L. de Bruyn, Krisztina Koehorst, Martijn de Vries, Hilde D. Bloks, Vincent W. Kuipers, Folkert de Boer, Jan Freark Clin Sci (Lond) Gastrointestinal, Renal & Hepatic Systems Cyp2c70-deficient mice have a human-like bile acid (BA) composition due to their inability to convert chenodeoxycholic acid (CDCA) into rodent-specific muricholic acids (MCAs). However, the hydrophobic BA composition in these animals is associated with liver pathology. Although Cyp2c70-ablation has been shown to alter gut microbiome composition, the impact of gut bacteria on liver pathology in Cyp2c70(−/−) mice remains to be established. Therefore, we treated young-adult male and female wild-type (WT) and Cyp2c70(−/−) mice with antibiotics (AB) with broad specificity to deplete the gut microbiota and assessed the consequences on BA metabolism and liver pathology. Female Cyp2c70(−/−) mice did not tolerate AB treatment, necessitating premature termination of the experiment. Male Cyp2c70(−/−) mice did tolerate AB but showed markedly augmented liver pathology after 6 weeks of treatment. Dramatic downregulation of hepatic Cyp8b1 expression (−99%) caused a reduction in the proportions of 12α-hydroxylated BAs in the circulating BA pools of AB-treated male Cyp2c70(−/−) mice. Interestingly, the resulting increased BA hydrophobicity strongly correlated with various indicators of liver pathology. Moreover, genetic inactivation of Cyp8b1 in livers of male Cyp2c70(−/−) mice increased liver pathology, while addition of ursodeoxycholic acid to the diet prevented weight loss and liver pathology in AB-treated female Cyp2c70(−/−) mice. In conclusion, depletion of gut microbiota in Cyp2c70(−/−) mice aggravates liver pathology at least in part by increasing the hydrophobicity of the circulating BA pool. These findings highlight that the potential implications of AB administration to cholestatic patients should be evaluated in a systematic manner. Portland Press Ltd. 2023-11 2023-11-10 /pmc/articles/PMC10643054/ /pubmed/37910096 http://dx.doi.org/10.1042/CS20230812 Text en © 2023 The Author(s). https://creativecommons.org/licenses/by/4.0/This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Gastrointestinal, Renal & Hepatic Systems
Verkade, Esther
Shen, Wenqiang
Hovingh, Milaine V.
Mulder, Niels L.
de Bruyn, Krisztina
Koehorst, Martijn
de Vries, Hilde D.
Bloks, Vincent W.
Kuipers, Folkert
de Boer, Jan Freark
Gut microbiota depletion aggravates bile acid-induced liver pathology in mice with a human-like bile acid composition
title Gut microbiota depletion aggravates bile acid-induced liver pathology in mice with a human-like bile acid composition
title_full Gut microbiota depletion aggravates bile acid-induced liver pathology in mice with a human-like bile acid composition
title_fullStr Gut microbiota depletion aggravates bile acid-induced liver pathology in mice with a human-like bile acid composition
title_full_unstemmed Gut microbiota depletion aggravates bile acid-induced liver pathology in mice with a human-like bile acid composition
title_short Gut microbiota depletion aggravates bile acid-induced liver pathology in mice with a human-like bile acid composition
title_sort gut microbiota depletion aggravates bile acid-induced liver pathology in mice with a human-like bile acid composition
topic Gastrointestinal, Renal & Hepatic Systems
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10643054/
https://www.ncbi.nlm.nih.gov/pubmed/37910096
http://dx.doi.org/10.1042/CS20230812
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