Altered bile acid composition and disposition in a mouse model of non-alcoholic steatohepatitis
-
Add time:08/11/2019 Source:sciencedirect.com
Non-alcoholic steatohepatitis (NASH) is a progressive inflammatory and fibrotic disease. However, the progression mechanism of NASH is not well understood. Bile acids are endogenous molecules that regulate cholesterol homeostasis, lipid solubilization in the intestinal lumen, and metabolic signaling via several receptors. In this study, we investigated the relationship between bile acid composition and NASH-associated fibrosis using a mouse model fed choline-deficient, L-amino-acid-defined, high-fat diet with 0.1% methionine (CDAHFD). C57BL/6 J mice fed CDAHFD developed NASH and fibrosis within few weeks. With the progress of NASH-associated liver fibrosis, altered bile acid composition was observed in the liver, bile, and peripheral plasma. Decreased mRNA levels of bile acid metabolizing enzymes such as Cyp7a1 and Baat were observed in contrast to increased Sult2a1 level in the liver. Increased mRNA levels of Ostβ and Abcc4 and decreased in mRNA levels of Bsep, Abcc2, Ntcp, and Oatp1b2, suggesting that bile acids efflux from hepatocytes into the peripheral plasma rather than into bile. In conclusion, the changes in bile acid metabolizing enzymes and transporters expression, resulting in increasing the total bile acid concentration in the plasma, signify a protection mechanism by the hepatocyte to reduce hepatotoxicity during disease progression to NASH but may promote liver fibrosis.
We also recommend Trading Suppliers and Manufacturers of GLYCODEOXYCHOLIC ACID SODIUM SALT (cas 16409-34-0). Pls Click Website Link as below: cas 16409-34-0 suppliers
Prev:A novel vector for lactic acid bacteria that uses a bile salt hydrolase gene as a potential food-grade selection marker
Next:Studies on the interactions between bile salts and food emulsifiers under in vitro duodenal digestion conditions to evaluate their bile salt binding potential) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Different feedback regulation of hepatic cholesterol and bile acid synthesis by glycodeoxycholic acid in rabbits08/13/2019
- Studies on the interactions between bile salts and food emulsifiers under in vitro duodenal digestion conditions to evaluate their bile salt binding potential08/12/2019
- A novel vector for lactic acid bacteria that uses a bile salt hydrolase gene as a potential food-grade selection marker08/10/2019
- Identification of Bile Acids Responsible for Inhibiting the Bile Salt Export Pump, Leading to Bile Acid Accumulation and Cell Toxicity in Rat Hepatocytes08/09/2019
- Characterization of conjugated and unconjugated bile acid transport via human organic solute transporter α/β08/08/2019
- Glycocholic acid and glycodeoxycholic acid but not glycoursocholic acid inhibit bile acid synthesis in the rabbit08/07/2019
- Antimicrobial cholic acid derivatives from the Pitch Lake bacterium Bacillus amyloliquefaciens UWI-W2308/06/2019
- Characterization of partition and thermodynamic properties of cephalosporins using micellar electrokinetic chromatography in glycodeoxycholic acid solution08/05/2019
-
Health and Chemical more >


