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Early Induction of Oxidative Stress in Mouse Model of Alzheimer Disease with Reduced Mitochondrial Superoxide Dismutase Activity

While oxidative stress has been linked to Alzheimer's disease, the underlying pathophysiological relationship is unclear. To examine this relationship, we induced oxidative stress through the genetic ablation of one copy of mitochondrial antioxidant superoxide dismutase 2 (Sod2) allele in mutan...

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Autores principales: Lee, Hyun-Pil, Pancholi, Neel, Esposito, Luke, Previll, Laura A., Wang, Xinglong, Zhu, Xiongwei, Smith, Mark A., Lee, Hyoung-gon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3261865/
https://www.ncbi.nlm.nih.gov/pubmed/22276093
http://dx.doi.org/10.1371/journal.pone.0028033
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author Lee, Hyun-Pil
Pancholi, Neel
Esposito, Luke
Previll, Laura A.
Wang, Xinglong
Zhu, Xiongwei
Smith, Mark A.
Lee, Hyoung-gon
author_facet Lee, Hyun-Pil
Pancholi, Neel
Esposito, Luke
Previll, Laura A.
Wang, Xinglong
Zhu, Xiongwei
Smith, Mark A.
Lee, Hyoung-gon
author_sort Lee, Hyun-Pil
collection PubMed
description While oxidative stress has been linked to Alzheimer's disease, the underlying pathophysiological relationship is unclear. To examine this relationship, we induced oxidative stress through the genetic ablation of one copy of mitochondrial antioxidant superoxide dismutase 2 (Sod2) allele in mutant human amyloid precursor protein (hAPP) transgenic mice. The brains of young (5–7 months of age) and old (25–30 months of age) mice with the four genotypes, wild-type (Sod2(+/+)), hemizygous Sod2 (Sod2(+/−)), hAPP/wild-type (Sod2(+/+)), and hAPP/hemizygous (Sod2(+/−)) were examined to assess levels of oxidative stress markers 4-hydroxy-2-nonenal and heme oxygenase-1. Sod2 reduction in young hAPP mice resulted in significantly increased oxidative stress in the pyramidal neurons of the hippocampus. Interestingly, while differences resulting from hAPP expression or Sod2 reduction were not apparent in the neurons in old mice, oxidative stress was increased in astrocytes in old, but not young hAPP mice with either Sod2(+/+) or Sod2(+/−). Our study shows the specific changes in oxidative stress and the causal relationship with the pathological progression of these mice. These results suggest that the early neuronal susceptibility to oxidative stress in the hAPP/Sod2(+/−) mice may contribute to the pathological and behavioral changes seen in this animal model.
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spelling pubmed-32618652012-01-24 Early Induction of Oxidative Stress in Mouse Model of Alzheimer Disease with Reduced Mitochondrial Superoxide Dismutase Activity Lee, Hyun-Pil Pancholi, Neel Esposito, Luke Previll, Laura A. Wang, Xinglong Zhu, Xiongwei Smith, Mark A. Lee, Hyoung-gon PLoS One Research Article While oxidative stress has been linked to Alzheimer's disease, the underlying pathophysiological relationship is unclear. To examine this relationship, we induced oxidative stress through the genetic ablation of one copy of mitochondrial antioxidant superoxide dismutase 2 (Sod2) allele in mutant human amyloid precursor protein (hAPP) transgenic mice. The brains of young (5–7 months of age) and old (25–30 months of age) mice with the four genotypes, wild-type (Sod2(+/+)), hemizygous Sod2 (Sod2(+/−)), hAPP/wild-type (Sod2(+/+)), and hAPP/hemizygous (Sod2(+/−)) were examined to assess levels of oxidative stress markers 4-hydroxy-2-nonenal and heme oxygenase-1. Sod2 reduction in young hAPP mice resulted in significantly increased oxidative stress in the pyramidal neurons of the hippocampus. Interestingly, while differences resulting from hAPP expression or Sod2 reduction were not apparent in the neurons in old mice, oxidative stress was increased in astrocytes in old, but not young hAPP mice with either Sod2(+/+) or Sod2(+/−). Our study shows the specific changes in oxidative stress and the causal relationship with the pathological progression of these mice. These results suggest that the early neuronal susceptibility to oxidative stress in the hAPP/Sod2(+/−) mice may contribute to the pathological and behavioral changes seen in this animal model. Public Library of Science 2012-01-19 /pmc/articles/PMC3261865/ /pubmed/22276093 http://dx.doi.org/10.1371/journal.pone.0028033 Text en Lee et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lee, Hyun-Pil
Pancholi, Neel
Esposito, Luke
Previll, Laura A.
Wang, Xinglong
Zhu, Xiongwei
Smith, Mark A.
Lee, Hyoung-gon
Early Induction of Oxidative Stress in Mouse Model of Alzheimer Disease with Reduced Mitochondrial Superoxide Dismutase Activity
title Early Induction of Oxidative Stress in Mouse Model of Alzheimer Disease with Reduced Mitochondrial Superoxide Dismutase Activity
title_full Early Induction of Oxidative Stress in Mouse Model of Alzheimer Disease with Reduced Mitochondrial Superoxide Dismutase Activity
title_fullStr Early Induction of Oxidative Stress in Mouse Model of Alzheimer Disease with Reduced Mitochondrial Superoxide Dismutase Activity
title_full_unstemmed Early Induction of Oxidative Stress in Mouse Model of Alzheimer Disease with Reduced Mitochondrial Superoxide Dismutase Activity
title_short Early Induction of Oxidative Stress in Mouse Model of Alzheimer Disease with Reduced Mitochondrial Superoxide Dismutase Activity
title_sort early induction of oxidative stress in mouse model of alzheimer disease with reduced mitochondrial superoxide dismutase activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3261865/
https://www.ncbi.nlm.nih.gov/pubmed/22276093
http://dx.doi.org/10.1371/journal.pone.0028033
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