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Age-Dependent Decline in Synaptic Mitochondrial Function Is Exacerbated in Vulnerable Brain Regions of Female 3xTg-AD Mice

Synaptic aging has been associated with neuronal circuit dysfunction and cognitive decline. Reduced mitochondrial function may be an early event that compromises synaptic integrity and neurotransmission in vulnerable brain regions during physiological and pathological aging. Thus, we aimed to measur...

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Autores principales: Espino de la Fuente-Muñoz, César, Rosas-Lemus, Mónica, Moreno-Castilla, Perla, Bermúdez-Rattoni, Federico, Uribe-Carvajal, Salvador, Arias, Clorinda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7699171/
https://www.ncbi.nlm.nih.gov/pubmed/33227902
http://dx.doi.org/10.3390/ijms21228727
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author Espino de la Fuente-Muñoz, César
Rosas-Lemus, Mónica
Moreno-Castilla, Perla
Bermúdez-Rattoni, Federico
Uribe-Carvajal, Salvador
Arias, Clorinda
author_facet Espino de la Fuente-Muñoz, César
Rosas-Lemus, Mónica
Moreno-Castilla, Perla
Bermúdez-Rattoni, Federico
Uribe-Carvajal, Salvador
Arias, Clorinda
author_sort Espino de la Fuente-Muñoz, César
collection PubMed
description Synaptic aging has been associated with neuronal circuit dysfunction and cognitive decline. Reduced mitochondrial function may be an early event that compromises synaptic integrity and neurotransmission in vulnerable brain regions during physiological and pathological aging. Thus, we aimed to measure mitochondrial function in synapses from three brain regions at two different ages in the 3xTg-AD mouse model and in wild mice. We found that aging is the main factor associated with the decline in synaptic mitochondrial function, particularly in synapses isolated from the cerebellum. Accumulation of toxic compounds, such as tau and Aβ, that occurred in the 3xTg-AD mouse model seemed to participate in the worsening of this decline in the hippocampus. The changes in synaptic bioenergetics were also associated with increased activation of the mitochondrial fission protein Drp1. These results suggest the presence of altered mechanisms of synaptic mitochondrial dynamics and their quality control during aging and in the 3xTg-AD mouse model; they also point to bioenergetic restoration as a useful therapeutic strategy to preserve synaptic function during aging and at the early stages of Alzheimer’s disease (AD).
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spelling pubmed-76991712020-11-29 Age-Dependent Decline in Synaptic Mitochondrial Function Is Exacerbated in Vulnerable Brain Regions of Female 3xTg-AD Mice Espino de la Fuente-Muñoz, César Rosas-Lemus, Mónica Moreno-Castilla, Perla Bermúdez-Rattoni, Federico Uribe-Carvajal, Salvador Arias, Clorinda Int J Mol Sci Article Synaptic aging has been associated with neuronal circuit dysfunction and cognitive decline. Reduced mitochondrial function may be an early event that compromises synaptic integrity and neurotransmission in vulnerable brain regions during physiological and pathological aging. Thus, we aimed to measure mitochondrial function in synapses from three brain regions at two different ages in the 3xTg-AD mouse model and in wild mice. We found that aging is the main factor associated with the decline in synaptic mitochondrial function, particularly in synapses isolated from the cerebellum. Accumulation of toxic compounds, such as tau and Aβ, that occurred in the 3xTg-AD mouse model seemed to participate in the worsening of this decline in the hippocampus. The changes in synaptic bioenergetics were also associated with increased activation of the mitochondrial fission protein Drp1. These results suggest the presence of altered mechanisms of synaptic mitochondrial dynamics and their quality control during aging and in the 3xTg-AD mouse model; they also point to bioenergetic restoration as a useful therapeutic strategy to preserve synaptic function during aging and at the early stages of Alzheimer’s disease (AD). MDPI 2020-11-19 /pmc/articles/PMC7699171/ /pubmed/33227902 http://dx.doi.org/10.3390/ijms21228727 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
Espino de la Fuente-Muñoz, César
Rosas-Lemus, Mónica
Moreno-Castilla, Perla
Bermúdez-Rattoni, Federico
Uribe-Carvajal, Salvador
Arias, Clorinda
Age-Dependent Decline in Synaptic Mitochondrial Function Is Exacerbated in Vulnerable Brain Regions of Female 3xTg-AD Mice
title Age-Dependent Decline in Synaptic Mitochondrial Function Is Exacerbated in Vulnerable Brain Regions of Female 3xTg-AD Mice
title_full Age-Dependent Decline in Synaptic Mitochondrial Function Is Exacerbated in Vulnerable Brain Regions of Female 3xTg-AD Mice
title_fullStr Age-Dependent Decline in Synaptic Mitochondrial Function Is Exacerbated in Vulnerable Brain Regions of Female 3xTg-AD Mice
title_full_unstemmed Age-Dependent Decline in Synaptic Mitochondrial Function Is Exacerbated in Vulnerable Brain Regions of Female 3xTg-AD Mice
title_short Age-Dependent Decline in Synaptic Mitochondrial Function Is Exacerbated in Vulnerable Brain Regions of Female 3xTg-AD Mice
title_sort age-dependent decline in synaptic mitochondrial function is exacerbated in vulnerable brain regions of female 3xtg-ad mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7699171/
https://www.ncbi.nlm.nih.gov/pubmed/33227902
http://dx.doi.org/10.3390/ijms21228727
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