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...
Главные авторы: | Ioannis Evangelakos, Dorothee Schwinge, Anna Worthmann, Clara John, Niklas Roeder, Paul Pertzborn, Janina Behrens, Christoph Schramm, Ludger Scheja, Joerg Heeren |
---|---|
Формат: | Статья |
Язык: | English |
Опубликовано: |
MDPI AG
2021-10-01
|
Серии: | Cells |
Предметы: | |
Online-ссылка: | https://www.mdpi.com/2073-4409/10/10/2656 |
Схожие документы
-
On the rate of translocation in vitro and kinetics in vivo of the major oxysterols in human circulation
по: Steve Meaney, и др.
Опубликовано: (2002-12-01) -
Oxysterols: From redox bench to industry
по: Giuseppe Poli, и др.
Опубликовано: (2022-02-01) -
Biosynthesis of the regulatory oxysterol, 5-cholesten-3β,25-diol 3-sulfate, in hepatocytes
по: Xiaobo Li, и др.
Опубликовано: (2007-12-01) -
Preparation of Oxysterols by C–H Oxidation of Dibromocholestane with Ru(Bpga) Catalyst
по: Yui Fujii, и др.
Опубликовано: (2021-12-01) -
Effects of Oxysterols on Immune Cells and Related Diseases
по: Fábio Alessandro de Freitas, и др.
Опубликовано: (2022-04-01)