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Liver and White/Brown Fat Dystrophy Associates with Gut Microbiota and Metabolomic Alterations in 3xTg Alzheimer’s Disease Mouse Model

Metabolic impairments and liver and adipose depots alterations were reported in subjects with Alzheimer’s disease (AD), highlighting the role of the liver–adipose–tissue–brain axis in AD pathophysiology. The gut microbiota might play a modulating role. We investigated the alterations to the liver an...

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Autores principales: Guzzardi, Maria Angela, La Rosa, Federica, Campani, Daniela, Collado, Maria Carmen, Monleon, Daniel, Cacciato Insilla, Andrea, Tripodi, Maria, Zega, Alessandro, Dattilo, Alessia, Brunetto, Maurizia Rossana, Maffei, Margherita, Bonino, Ferruccio, Iozzo, Patricia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9028874/
https://www.ncbi.nlm.nih.gov/pubmed/35448465
http://dx.doi.org/10.3390/metabo12040278
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author Guzzardi, Maria Angela
La Rosa, Federica
Campani, Daniela
Collado, Maria Carmen
Monleon, Daniel
Cacciato Insilla, Andrea
Tripodi, Maria
Zega, Alessandro
Dattilo, Alessia
Brunetto, Maurizia Rossana
Maffei, Margherita
Bonino, Ferruccio
Iozzo, Patricia
author_facet Guzzardi, Maria Angela
La Rosa, Federica
Campani, Daniela
Collado, Maria Carmen
Monleon, Daniel
Cacciato Insilla, Andrea
Tripodi, Maria
Zega, Alessandro
Dattilo, Alessia
Brunetto, Maurizia Rossana
Maffei, Margherita
Bonino, Ferruccio
Iozzo, Patricia
author_sort Guzzardi, Maria Angela
collection PubMed
description Metabolic impairments and liver and adipose depots alterations were reported in subjects with Alzheimer’s disease (AD), highlighting the role of the liver–adipose–tissue–brain axis in AD pathophysiology. The gut microbiota might play a modulating role. We investigated the alterations to the liver and white/brown adipose tissues (W/BAT) and their relationships with serum and gut metabolites and gut bacteria in a 3xTg mouse model during AD onset (adulthood) and progression (aging) and the impact of high-fat diet (HFD) and intranasal insulin (INI). Glucose metabolism ((18)FDG-PET), tissue radiodensity (CT), liver and W/BAT histology, BAT-thermogenic markers were analyzed. 16S-RNA sequencing and mass-spectrometry were performed in adult (8 months) and aged (14 months) 3xTg-AD mice with a high-fat or control diet. Generalized and HFD resistant deficiency of lipid accumulation in both liver and W/BAT, hypermetabolism in WAT (adulthood) and BAT (aging), abnormal cytokine–hormone profiles, and liver inflammation were observed in 3xTg mice; INI could antagonize all these alterations. Specific gut microbiota–metabolome profiles correlated with a significant disruption of the gut–microbiota–liver–adipose axis in AD mice. In conclusion, fat dystrophy in liver and adipose depots contributes to AD progression, and associates with altered profiles of the gut microbiota, which candidates as an appealing early target for preventive intervention.
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spelling pubmed-90288742022-04-23 Liver and White/Brown Fat Dystrophy Associates with Gut Microbiota and Metabolomic Alterations in 3xTg Alzheimer’s Disease Mouse Model Guzzardi, Maria Angela La Rosa, Federica Campani, Daniela Collado, Maria Carmen Monleon, Daniel Cacciato Insilla, Andrea Tripodi, Maria Zega, Alessandro Dattilo, Alessia Brunetto, Maurizia Rossana Maffei, Margherita Bonino, Ferruccio Iozzo, Patricia Metabolites Article Metabolic impairments and liver and adipose depots alterations were reported in subjects with Alzheimer’s disease (AD), highlighting the role of the liver–adipose–tissue–brain axis in AD pathophysiology. The gut microbiota might play a modulating role. We investigated the alterations to the liver and white/brown adipose tissues (W/BAT) and their relationships with serum and gut metabolites and gut bacteria in a 3xTg mouse model during AD onset (adulthood) and progression (aging) and the impact of high-fat diet (HFD) and intranasal insulin (INI). Glucose metabolism ((18)FDG-PET), tissue radiodensity (CT), liver and W/BAT histology, BAT-thermogenic markers were analyzed. 16S-RNA sequencing and mass-spectrometry were performed in adult (8 months) and aged (14 months) 3xTg-AD mice with a high-fat or control diet. Generalized and HFD resistant deficiency of lipid accumulation in both liver and W/BAT, hypermetabolism in WAT (adulthood) and BAT (aging), abnormal cytokine–hormone profiles, and liver inflammation were observed in 3xTg mice; INI could antagonize all these alterations. Specific gut microbiota–metabolome profiles correlated with a significant disruption of the gut–microbiota–liver–adipose axis in AD mice. In conclusion, fat dystrophy in liver and adipose depots contributes to AD progression, and associates with altered profiles of the gut microbiota, which candidates as an appealing early target for preventive intervention. MDPI 2022-03-22 /pmc/articles/PMC9028874/ /pubmed/35448465 http://dx.doi.org/10.3390/metabo12040278 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Guzzardi, Maria Angela
La Rosa, Federica
Campani, Daniela
Collado, Maria Carmen
Monleon, Daniel
Cacciato Insilla, Andrea
Tripodi, Maria
Zega, Alessandro
Dattilo, Alessia
Brunetto, Maurizia Rossana
Maffei, Margherita
Bonino, Ferruccio
Iozzo, Patricia
Liver and White/Brown Fat Dystrophy Associates with Gut Microbiota and Metabolomic Alterations in 3xTg Alzheimer’s Disease Mouse Model
title Liver and White/Brown Fat Dystrophy Associates with Gut Microbiota and Metabolomic Alterations in 3xTg Alzheimer’s Disease Mouse Model
title_full Liver and White/Brown Fat Dystrophy Associates with Gut Microbiota and Metabolomic Alterations in 3xTg Alzheimer’s Disease Mouse Model
title_fullStr Liver and White/Brown Fat Dystrophy Associates with Gut Microbiota and Metabolomic Alterations in 3xTg Alzheimer’s Disease Mouse Model
title_full_unstemmed Liver and White/Brown Fat Dystrophy Associates with Gut Microbiota and Metabolomic Alterations in 3xTg Alzheimer’s Disease Mouse Model
title_short Liver and White/Brown Fat Dystrophy Associates with Gut Microbiota and Metabolomic Alterations in 3xTg Alzheimer’s Disease Mouse Model
title_sort liver and white/brown fat dystrophy associates with gut microbiota and metabolomic alterations in 3xtg alzheimer’s disease mouse model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9028874/
https://www.ncbi.nlm.nih.gov/pubmed/35448465
http://dx.doi.org/10.3390/metabo12040278
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