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Bempedoic Acid Restores Liver H2S Production in a Female Sprague-Dawley Rat DietaryModel of Non-Alcoholic Fatty Liver

Título : Bempedoic Acid Restores Liver H2S Production in a Female Sprague-Dawley Rat DietaryModel of Non-Alcoholic Fatty Liver
Autor : Roglans, Nuria
Fauste Alonso, Elena
Bentanachs, Roger
Velázquez, Ana María
Pérez Armas, Madelín
Donis Rodríguez, Cristina
Panadero Antón, María Isabel
Alegret, Marta
Bocos de Prada, Carlos
Laguna de Paz, José Carlos
Materias: NAFLDFXRmTORC1S6K1FructoseHigh-fat diet
Editorial : MDPI
Citación : Roglans, N.; Fauste, E.; Bentanachs, R.; Velázquez, A.M.; Pérez-Armas, M.; Donis, C.; Panadero, M.I.; Alegret, M.; Otero, P.; Bocos, C.; et al. Bempedoic Acid Restores Liver H2S Production in a Female Sprague-Dawley Rat Dietary Model of Non-Alcoholic Fatty Liver. Int. J. Mol. Sci. 2023, 24, 473. https://doi.org/10.3390/ ijms24010473
Resumen : We previously demonstrated that treatment with BemA (bempedoic acid), an inhibitor of ATP citrate lyase, significantly reduces fatty liver in a model of liver steatosis (HFHFr—female Sprague-Dawley rat fed a high-fat high-fructose diet). Since the hepatic production of the gasotransmitter H2S is impaired in liver disorders, we were interested in determining if the production of H2S was altered in our HFHFr model and whether the administration of BemA reversed these changes. We used stored liver samples from a previous study to determine the total and enzymatic H2S production, as well as the expression of CBS (cystathionine -synthase), CSE (cystathionine -lyase), and 3MST (3-mercaptopiruvate sulfurtransferase), and the expression/activity of FXR (farnesoid X receptor), a transcription factor involved in regulating CSE expression. Our data show that the HFHFr diet reduces the total and enzymatic production of liver H2S, mainly by decreasing the expression of CBS and CSE. Furthermore, BemA treatment restored H2S production, increasing the expression of CBS and CSE, providing evidence for the involvement of FXR transcriptional activity and the mTORC1 (mammalian target of rapamycin1)/S6K1 (ribosomal protein S6 kinase beta-1)/PGC1 (peroxisome proliferator receptor gamma coactivator1 ) pathway.
URI : http://hdl.handle.net/10637/14951
Derechos: http://creativecommons.org/licenses/by-nc-nd/4.0/deed.es
Open Access
ISSN : 1422-0067
Fecha de publicación : 28-dic-2022
Centro : Universidad San Pablo-CEU
Aparece en las colecciones: Facultad de Farmacia





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