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Exogenous Liposomal Ceramide-C6 Ameliorates Lipidomic Profile, Energy Homeostasis, and Anti-Oxidant Systems in NASH

In non-alcoholic steatohepatitis (NASH), many lines of investigation have reported a dysregulation in lipid homeostasis, leading to intrahepatic lipid accumulation. Recently, the role of dysfunctional sphingolipid metabolism has also been proposed. Human and animal models of NASH have been associate...

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Autores principales: Zanieri, Francesca, Levi, Ana, Montefusco, David, Longato, Lisa, De Chiara, Francesco, Frenguelli, Luca, Omenetti, Sara, Andreola, Fausto, Luong, Tu Vinh, Massey, Veronica, Caballeria, Juan, Fondevila, Constantino, Shanmugavelandy, Sriram S, Fox, Todd, Mazza, Giuseppe, Argemi, Josepmaria, Bataller, Ramon, Cowart, Lauren Ashley, Kester, Mark, Pinzani, Massimo, Rombouts, Krista
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290333/
https://www.ncbi.nlm.nih.gov/pubmed/32429478
http://dx.doi.org/10.3390/cells9051237
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author Zanieri, Francesca
Levi, Ana
Montefusco, David
Longato, Lisa
De Chiara, Francesco
Frenguelli, Luca
Omenetti, Sara
Andreola, Fausto
Luong, Tu Vinh
Massey, Veronica
Caballeria, Juan
Fondevila, Constantino
Shanmugavelandy, Sriram S
Fox, Todd
Mazza, Giuseppe
Argemi, Josepmaria
Bataller, Ramon
Cowart, Lauren Ashley
Kester, Mark
Pinzani, Massimo
Rombouts, Krista
author_facet Zanieri, Francesca
Levi, Ana
Montefusco, David
Longato, Lisa
De Chiara, Francesco
Frenguelli, Luca
Omenetti, Sara
Andreola, Fausto
Luong, Tu Vinh
Massey, Veronica
Caballeria, Juan
Fondevila, Constantino
Shanmugavelandy, Sriram S
Fox, Todd
Mazza, Giuseppe
Argemi, Josepmaria
Bataller, Ramon
Cowart, Lauren Ashley
Kester, Mark
Pinzani, Massimo
Rombouts, Krista
author_sort Zanieri, Francesca
collection PubMed
description In non-alcoholic steatohepatitis (NASH), many lines of investigation have reported a dysregulation in lipid homeostasis, leading to intrahepatic lipid accumulation. Recently, the role of dysfunctional sphingolipid metabolism has also been proposed. Human and animal models of NASH have been associated with elevated levels of long chain ceramides and pro-apoptotic sphingolipid metabolites, implicated in regulating fatty acid oxidation and inflammation. Importantly, inhibition of de novo ceramide biosynthesis or knock-down of ceramide synthases reverse some of the pathology of NASH. In contrast, cell permeable, short chain ceramides have shown anti-inflammatory actions in multiple models of inflammatory disease. Here, we investigated non-apoptotic doses of a liposome containing short chain C6-Ceramide (Lip-C6) administered to human hepatic stellate cells (hHSC), a key effector of hepatic fibrogenesis, and an animal model characterized by inflammation and elevated liver fat content. On the basis of the results from unbiased liver transcriptomic studies from non-alcoholic fatty liver disease patients, we chose to focus on adenosine monophosphate activated kinase (AMPK) and nuclear factor-erythroid 2-related factor (Nrf2) signaling pathways, which showed an abnormal profile. Lip-C6 administration inhibited hHSC proliferation while improving anti-oxidant protection and energy homeostasis, as indicated by upregulation of Nrf2, activation of AMPK and an increase in ATP. To confirm these in vitro data, we investigated the effect of a single tail-vein injection of Lip-C6 in the methionine-choline deficient (MCD) diet mouse model. Lip-C6, but not control liposomes, upregulated phospho-AMPK, without inducing liver toxicity, apoptosis, or exacerbating inflammatory signaling pathways. Alluding to mechanism, mass spectrometry lipidomics showed that Lip-C6-treatment reversed the imbalance in hepatic phosphatidylcholines and diacylglycerides species induced by the MCD-fed diet. These results reveal that short-term Lip-C6 administration reverses energy/metabolic depletion and increases protective anti-oxidant signaling pathways, possibly by restoring homeostatic lipid function in a model of liver inflammation with fat accumulation.
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spelling pubmed-72903332020-06-15 Exogenous Liposomal Ceramide-C6 Ameliorates Lipidomic Profile, Energy Homeostasis, and Anti-Oxidant Systems in NASH Zanieri, Francesca Levi, Ana Montefusco, David Longato, Lisa De Chiara, Francesco Frenguelli, Luca Omenetti, Sara Andreola, Fausto Luong, Tu Vinh Massey, Veronica Caballeria, Juan Fondevila, Constantino Shanmugavelandy, Sriram S Fox, Todd Mazza, Giuseppe Argemi, Josepmaria Bataller, Ramon Cowart, Lauren Ashley Kester, Mark Pinzani, Massimo Rombouts, Krista Cells Article In non-alcoholic steatohepatitis (NASH), many lines of investigation have reported a dysregulation in lipid homeostasis, leading to intrahepatic lipid accumulation. Recently, the role of dysfunctional sphingolipid metabolism has also been proposed. Human and animal models of NASH have been associated with elevated levels of long chain ceramides and pro-apoptotic sphingolipid metabolites, implicated in regulating fatty acid oxidation and inflammation. Importantly, inhibition of de novo ceramide biosynthesis or knock-down of ceramide synthases reverse some of the pathology of NASH. In contrast, cell permeable, short chain ceramides have shown anti-inflammatory actions in multiple models of inflammatory disease. Here, we investigated non-apoptotic doses of a liposome containing short chain C6-Ceramide (Lip-C6) administered to human hepatic stellate cells (hHSC), a key effector of hepatic fibrogenesis, and an animal model characterized by inflammation and elevated liver fat content. On the basis of the results from unbiased liver transcriptomic studies from non-alcoholic fatty liver disease patients, we chose to focus on adenosine monophosphate activated kinase (AMPK) and nuclear factor-erythroid 2-related factor (Nrf2) signaling pathways, which showed an abnormal profile. Lip-C6 administration inhibited hHSC proliferation while improving anti-oxidant protection and energy homeostasis, as indicated by upregulation of Nrf2, activation of AMPK and an increase in ATP. To confirm these in vitro data, we investigated the effect of a single tail-vein injection of Lip-C6 in the methionine-choline deficient (MCD) diet mouse model. Lip-C6, but not control liposomes, upregulated phospho-AMPK, without inducing liver toxicity, apoptosis, or exacerbating inflammatory signaling pathways. Alluding to mechanism, mass spectrometry lipidomics showed that Lip-C6-treatment reversed the imbalance in hepatic phosphatidylcholines and diacylglycerides species induced by the MCD-fed diet. These results reveal that short-term Lip-C6 administration reverses energy/metabolic depletion and increases protective anti-oxidant signaling pathways, possibly by restoring homeostatic lipid function in a model of liver inflammation with fat accumulation. MDPI 2020-05-16 /pmc/articles/PMC7290333/ /pubmed/32429478 http://dx.doi.org/10.3390/cells9051237 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zanieri, Francesca
Levi, Ana
Montefusco, David
Longato, Lisa
De Chiara, Francesco
Frenguelli, Luca
Omenetti, Sara
Andreola, Fausto
Luong, Tu Vinh
Massey, Veronica
Caballeria, Juan
Fondevila, Constantino
Shanmugavelandy, Sriram S
Fox, Todd
Mazza, Giuseppe
Argemi, Josepmaria
Bataller, Ramon
Cowart, Lauren Ashley
Kester, Mark
Pinzani, Massimo
Rombouts, Krista
Exogenous Liposomal Ceramide-C6 Ameliorates Lipidomic Profile, Energy Homeostasis, and Anti-Oxidant Systems in NASH
title Exogenous Liposomal Ceramide-C6 Ameliorates Lipidomic Profile, Energy Homeostasis, and Anti-Oxidant Systems in NASH
title_full Exogenous Liposomal Ceramide-C6 Ameliorates Lipidomic Profile, Energy Homeostasis, and Anti-Oxidant Systems in NASH
title_fullStr Exogenous Liposomal Ceramide-C6 Ameliorates Lipidomic Profile, Energy Homeostasis, and Anti-Oxidant Systems in NASH
title_full_unstemmed Exogenous Liposomal Ceramide-C6 Ameliorates Lipidomic Profile, Energy Homeostasis, and Anti-Oxidant Systems in NASH
title_short Exogenous Liposomal Ceramide-C6 Ameliorates Lipidomic Profile, Energy Homeostasis, and Anti-Oxidant Systems in NASH
title_sort exogenous liposomal ceramide-c6 ameliorates lipidomic profile, energy homeostasis, and anti-oxidant systems in nash
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290333/
https://www.ncbi.nlm.nih.gov/pubmed/32429478
http://dx.doi.org/10.3390/cells9051237
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