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9-PAHSA Prevents Mitochondrial Dysfunction and Increases the Viability of Steatotic Hepatocytes

Authors :
Schultz Moreira, Adriana R.
Rüschenbaum, Sabrina
Schefczyk, Stefan
Hendgen-Cotta, Ulrike
Rassaf, Tienush
Broering, Ruth
Hardtke-Wolenski, Matthias
Buitrago-Molina, Laura Elisa
Source :
International Journal of Molecular Sciences, International Journal of Molecular Sciences, Vol 21, Iss 8279, p 8279 (2020)
Publication Year :
2020
Publisher :
MDPI, 2020.

Abstract

Nonalcoholic fatty liver disease (NAFLD) is quickly becoming the most common liver disease worldwide. Within the NAFLD spectrum, patients with nonalcoholic steatohepatitis (NASH) are at the highest risk of developing cirrhosis and disease progression to hepatocellular carcinoma. To date, therapeutic options for NASH patients have been ineffective, and therefore, new options are urgently needed. Hence, a model system to develop new therapeutic interventions is needed. Here, we introduce two new in vitro models of steatosis induction in HepG2 cells and primary murine hepatocytes. We used a recently discovered novel class of bioactive anti-inflammatory lipids called branched fatty acid esters of hydroxyl fatty acids. Among these bioactive lipids, palmitic-acid-9-hydroxy-stearic-acid (9-PAHSA) is the most promising as a representative nondrug therapy based on dietary supplements or nutritional modifications. In this study, we show a therapeutic effect of 9-PAHSA on lipotoxicity in steatotic primary hepatocytes and HepG2 cells. This could be shown be increased viability and decreased steatosis. Furthermore, we could demonstrate a preventive effect in HepG2 cells. The outcome of 9-PAHSA administration is both preventative and therapeutically effective for hepatocytes with limited damage. In conclusion, bioactive lipids like 9-PAHSA offer new hope for prevention or treatment in patients with fatty liver and steatosis. OA Förderung 2020

Details

Language :
English
ISSN :
14220067
Volume :
21
Issue :
21
Database :
OpenAIRE
Journal :
International Journal of Molecular Sciences
Accession number :
edsair.pmid.dedup....c41a90e6c422133fc5be6589ea4af0a7