Cargando…

Oxysterol 7-α Hydroxylase (CYP7B1) Attenuates Metabolic-Associated Fatty Liver Disease in Mice at Thermoneutrality

Ambient temperature is an important determinant of both the alternative bile acid synthesis pathway controlled by oxysterol 7-α hydroxylase (CYP7B1) and the progression of metabolic-associated fatty liver disease (MAFLD). Here, we investigated whether CYP7B1 is involved in the etiology of MAFLD unde...

Descripción completa

Detalles Bibliográficos
Autores principales: Evangelakos, Ioannis, Schwinge, Dorothee, Worthmann, Anna, John, Clara, Roeder, Niklas, Pertzborn, Paul, Behrens, Janina, Schramm, Christoph, Scheja, Ludger, Heeren, Joerg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8534379/
https://www.ncbi.nlm.nih.gov/pubmed/34685636
http://dx.doi.org/10.3390/cells10102656
_version_ 1784587538640404480
author Evangelakos, Ioannis
Schwinge, Dorothee
Worthmann, Anna
John, Clara
Roeder, Niklas
Pertzborn, Paul
Behrens, Janina
Schramm, Christoph
Scheja, Ludger
Heeren, Joerg
author_facet Evangelakos, Ioannis
Schwinge, Dorothee
Worthmann, Anna
John, Clara
Roeder, Niklas
Pertzborn, Paul
Behrens, Janina
Schramm, Christoph
Scheja, Ludger
Heeren, Joerg
author_sort Evangelakos, Ioannis
collection PubMed
description Ambient temperature is an important determinant of both the alternative bile acid synthesis pathway controlled by oxysterol 7-α hydroxylase (CYP7B1) and the progression of metabolic-associated fatty liver disease (MAFLD). Here, we investigated whether CYP7B1 is involved in the etiology of MAFLD under conditions of low and high energy expenditure. For this, Cyp7b1(−/−) and wild type (WT) mice were fed a choline-deficient high-fat diet and housed either at 30 °C (thermoneutrality) or at 22 °C (mild cold). To study disease phenotype and underlying mechanisms, plasma and organ samples were analyzed to determine metabolic parameters, immune cell infiltration by immunohistology and flow cytometry, lipid species including hydroxycholesterols, bile acids and structural lipids. In WT and Cyp7b1(−/−) mice, thermoneutral housing promoted MAFLD, an effect that was more pronounced in CYP7B1-deficient mice. In these mice, we found higher plasma alanine aminotransferase activity, hyperlipidemia, hepatic accumulation of potentially harmful lipid species, aggravated liver fibrosis, increased inflammation and immune cell infiltration. Bile acids and hydroxycholesterols did not correlate with aggravated MAFLD in Cyp7b1(−/−) mice housed at thermoneutrality. Notably, an up-regulation of lipoprotein receptors was detected at 22 °C but not at 30 °C in livers of Cyp7b1(−/−) mice, suggesting that accelerated metabolism of lipoproteins carrying lipotoxic molecules counteracts MAFLD progression.
format Online
Article
Text
id pubmed-8534379
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-85343792021-10-23 Oxysterol 7-α Hydroxylase (CYP7B1) Attenuates Metabolic-Associated Fatty Liver Disease in Mice at Thermoneutrality Evangelakos, Ioannis Schwinge, Dorothee Worthmann, Anna John, Clara Roeder, Niklas Pertzborn, Paul Behrens, Janina Schramm, Christoph Scheja, Ludger Heeren, Joerg Cells Article Ambient temperature is an important determinant of both the alternative bile acid synthesis pathway controlled by oxysterol 7-α hydroxylase (CYP7B1) and the progression of metabolic-associated fatty liver disease (MAFLD). Here, we investigated whether CYP7B1 is involved in the etiology of MAFLD under conditions of low and high energy expenditure. For this, Cyp7b1(−/−) and wild type (WT) mice were fed a choline-deficient high-fat diet and housed either at 30 °C (thermoneutrality) or at 22 °C (mild cold). To study disease phenotype and underlying mechanisms, plasma and organ samples were analyzed to determine metabolic parameters, immune cell infiltration by immunohistology and flow cytometry, lipid species including hydroxycholesterols, bile acids and structural lipids. In WT and Cyp7b1(−/−) mice, thermoneutral housing promoted MAFLD, an effect that was more pronounced in CYP7B1-deficient mice. In these mice, we found higher plasma alanine aminotransferase activity, hyperlipidemia, hepatic accumulation of potentially harmful lipid species, aggravated liver fibrosis, increased inflammation and immune cell infiltration. Bile acids and hydroxycholesterols did not correlate with aggravated MAFLD in Cyp7b1(−/−) mice housed at thermoneutrality. Notably, an up-regulation of lipoprotein receptors was detected at 22 °C but not at 30 °C in livers of Cyp7b1(−/−) mice, suggesting that accelerated metabolism of lipoproteins carrying lipotoxic molecules counteracts MAFLD progression. MDPI 2021-10-05 /pmc/articles/PMC8534379/ /pubmed/34685636 http://dx.doi.org/10.3390/cells10102656 Text en © 2021 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
Evangelakos, Ioannis
Schwinge, Dorothee
Worthmann, Anna
John, Clara
Roeder, Niklas
Pertzborn, Paul
Behrens, Janina
Schramm, Christoph
Scheja, Ludger
Heeren, Joerg
Oxysterol 7-α Hydroxylase (CYP7B1) Attenuates Metabolic-Associated Fatty Liver Disease in Mice at Thermoneutrality
title Oxysterol 7-α Hydroxylase (CYP7B1) Attenuates Metabolic-Associated Fatty Liver Disease in Mice at Thermoneutrality
title_full Oxysterol 7-α Hydroxylase (CYP7B1) Attenuates Metabolic-Associated Fatty Liver Disease in Mice at Thermoneutrality
title_fullStr Oxysterol 7-α Hydroxylase (CYP7B1) Attenuates Metabolic-Associated Fatty Liver Disease in Mice at Thermoneutrality
title_full_unstemmed Oxysterol 7-α Hydroxylase (CYP7B1) Attenuates Metabolic-Associated Fatty Liver Disease in Mice at Thermoneutrality
title_short Oxysterol 7-α Hydroxylase (CYP7B1) Attenuates Metabolic-Associated Fatty Liver Disease in Mice at Thermoneutrality
title_sort oxysterol 7-α hydroxylase (cyp7b1) attenuates metabolic-associated fatty liver disease in mice at thermoneutrality
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8534379/
https://www.ncbi.nlm.nih.gov/pubmed/34685636
http://dx.doi.org/10.3390/cells10102656
work_keys_str_mv AT evangelakosioannis oxysterol7ahydroxylasecyp7b1attenuatesmetabolicassociatedfattyliverdiseaseinmiceatthermoneutrality
AT schwingedorothee oxysterol7ahydroxylasecyp7b1attenuatesmetabolicassociatedfattyliverdiseaseinmiceatthermoneutrality
AT worthmannanna oxysterol7ahydroxylasecyp7b1attenuatesmetabolicassociatedfattyliverdiseaseinmiceatthermoneutrality
AT johnclara oxysterol7ahydroxylasecyp7b1attenuatesmetabolicassociatedfattyliverdiseaseinmiceatthermoneutrality
AT roederniklas oxysterol7ahydroxylasecyp7b1attenuatesmetabolicassociatedfattyliverdiseaseinmiceatthermoneutrality
AT pertzbornpaul oxysterol7ahydroxylasecyp7b1attenuatesmetabolicassociatedfattyliverdiseaseinmiceatthermoneutrality
AT behrensjanina oxysterol7ahydroxylasecyp7b1attenuatesmetabolicassociatedfattyliverdiseaseinmiceatthermoneutrality
AT schrammchristoph oxysterol7ahydroxylasecyp7b1attenuatesmetabolicassociatedfattyliverdiseaseinmiceatthermoneutrality
AT schejaludger oxysterol7ahydroxylasecyp7b1attenuatesmetabolicassociatedfattyliverdiseaseinmiceatthermoneutrality
AT heerenjoerg oxysterol7ahydroxylasecyp7b1attenuatesmetabolicassociatedfattyliverdiseaseinmiceatthermoneutrality