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The Hepatic Mitochondrial Alterations Exacerbate Meta-Inflammation in Autism Spectrum Disorders

The role of the liver in autism spectrum disorders (ASD), developmental disabilities characterized by impairments in social interactions and repetitive behavioral patterns, has been poorly investigated. In ASD, it has been shown a dysregulation of gut–brain crosstalk, a communication system able to...

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Autores principales: Trinchese, Giovanna, Cimmino, Fabiano, Cavaliere, Gina, Catapano, Angela, Fogliano, Chiara, Lama, Adriano, Pirozzi, Claudio, Cristiano, Claudia, Russo, Roberto, Petrella, Lidia, Meli, Rosaria, Mattace Raso, Giuseppina, Crispino, Marianna, Avallone, Bice, Mollica, Maria Pina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9598797/
https://www.ncbi.nlm.nih.gov/pubmed/36290713
http://dx.doi.org/10.3390/antiox11101990
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author Trinchese, Giovanna
Cimmino, Fabiano
Cavaliere, Gina
Catapano, Angela
Fogliano, Chiara
Lama, Adriano
Pirozzi, Claudio
Cristiano, Claudia
Russo, Roberto
Petrella, Lidia
Meli, Rosaria
Mattace Raso, Giuseppina
Crispino, Marianna
Avallone, Bice
Mollica, Maria Pina
author_facet Trinchese, Giovanna
Cimmino, Fabiano
Cavaliere, Gina
Catapano, Angela
Fogliano, Chiara
Lama, Adriano
Pirozzi, Claudio
Cristiano, Claudia
Russo, Roberto
Petrella, Lidia
Meli, Rosaria
Mattace Raso, Giuseppina
Crispino, Marianna
Avallone, Bice
Mollica, Maria Pina
author_sort Trinchese, Giovanna
collection PubMed
description The role of the liver in autism spectrum disorders (ASD), developmental disabilities characterized by impairments in social interactions and repetitive behavioral patterns, has been poorly investigated. In ASD, it has been shown a dysregulation of gut–brain crosstalk, a communication system able to influence metabolic homeostasis, as well as brain development, mood and cognitive functions. The liver, with its key role in inflammatory and metabolic states, represents the crucial metabolic organ in this crosstalk. Indeed, through the portal vein, the liver receives not only nutrients but also numerous factors derived from the gut and visceral adipose tissue, which modulate metabolism and hepatic mitochondrial functions. Here, we investigated, in an animal model of ASD (BTBR mice), the involvement of hepatic mitochondria in the regulation of inflammatory state and liver damage. We observed increased inflammation and oxidative stress linked to hepatic mitochondrial dysfunction, steatotic hepatocytes, and marked mitochondrial fission in BTBR mice. Our preliminary study provides a better understanding of the pathophysiology of ASD and could open the way to identifying hepatic mitochondria as targets for innovative therapeutic strategies for the disease.
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spelling pubmed-95987972022-10-27 The Hepatic Mitochondrial Alterations Exacerbate Meta-Inflammation in Autism Spectrum Disorders Trinchese, Giovanna Cimmino, Fabiano Cavaliere, Gina Catapano, Angela Fogliano, Chiara Lama, Adriano Pirozzi, Claudio Cristiano, Claudia Russo, Roberto Petrella, Lidia Meli, Rosaria Mattace Raso, Giuseppina Crispino, Marianna Avallone, Bice Mollica, Maria Pina Antioxidants (Basel) Article The role of the liver in autism spectrum disorders (ASD), developmental disabilities characterized by impairments in social interactions and repetitive behavioral patterns, has been poorly investigated. In ASD, it has been shown a dysregulation of gut–brain crosstalk, a communication system able to influence metabolic homeostasis, as well as brain development, mood and cognitive functions. The liver, with its key role in inflammatory and metabolic states, represents the crucial metabolic organ in this crosstalk. Indeed, through the portal vein, the liver receives not only nutrients but also numerous factors derived from the gut and visceral adipose tissue, which modulate metabolism and hepatic mitochondrial functions. Here, we investigated, in an animal model of ASD (BTBR mice), the involvement of hepatic mitochondria in the regulation of inflammatory state and liver damage. We observed increased inflammation and oxidative stress linked to hepatic mitochondrial dysfunction, steatotic hepatocytes, and marked mitochondrial fission in BTBR mice. Our preliminary study provides a better understanding of the pathophysiology of ASD and could open the way to identifying hepatic mitochondria as targets for innovative therapeutic strategies for the disease. MDPI 2022-10-07 /pmc/articles/PMC9598797/ /pubmed/36290713 http://dx.doi.org/10.3390/antiox11101990 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
Trinchese, Giovanna
Cimmino, Fabiano
Cavaliere, Gina
Catapano, Angela
Fogliano, Chiara
Lama, Adriano
Pirozzi, Claudio
Cristiano, Claudia
Russo, Roberto
Petrella, Lidia
Meli, Rosaria
Mattace Raso, Giuseppina
Crispino, Marianna
Avallone, Bice
Mollica, Maria Pina
The Hepatic Mitochondrial Alterations Exacerbate Meta-Inflammation in Autism Spectrum Disorders
title The Hepatic Mitochondrial Alterations Exacerbate Meta-Inflammation in Autism Spectrum Disorders
title_full The Hepatic Mitochondrial Alterations Exacerbate Meta-Inflammation in Autism Spectrum Disorders
title_fullStr The Hepatic Mitochondrial Alterations Exacerbate Meta-Inflammation in Autism Spectrum Disorders
title_full_unstemmed The Hepatic Mitochondrial Alterations Exacerbate Meta-Inflammation in Autism Spectrum Disorders
title_short The Hepatic Mitochondrial Alterations Exacerbate Meta-Inflammation in Autism Spectrum Disorders
title_sort hepatic mitochondrial alterations exacerbate meta-inflammation in autism spectrum disorders
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9598797/
https://www.ncbi.nlm.nih.gov/pubmed/36290713
http://dx.doi.org/10.3390/antiox11101990
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