Effect of Moderate Intensity Exercise on Synaptic Vesicle Transporter and Antioxidant Enzyme Expression in High Fat Diet Fed 3xTg Mice

PURPOSE The purpose of this study was to analyze the effects of aerobic exercise on the expression of synaptic vesicle transporter and antioxidant enzymes in obesity and to investigate the feasibility of exercise training to reduce AD pathogenesis in the 3xTg-AD mice fed a high fat diet. METHODS Mal...

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Main Authors: Dong-Hyun Kim, In-Jae Kim
Format: Article
Language:Korean
Published: The Korean Society of Exercise Physiology 2020-05-01
Series:운동과학
Subjects:
Online Access:http://www.ksep-es.org/upload/pdf/es-29-2-178.pdf
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spelling doaj-cc40b1b1a4634d27a5f9d0acfff13dfe2020-11-25T03:37:52ZkorThe Korean Society of Exercise Physiology운동과학1226-17262384-05442020-05-0129217818710.15857/ksep.2020.29.2.178845Effect of Moderate Intensity Exercise on Synaptic Vesicle Transporter and Antioxidant Enzyme Expression in High Fat Diet Fed 3xTg MiceDong-Hyun Kim0In-Jae Kim1College of Sports Science, Sungkyunkwan University, Suwon, KoreaDepartment of Leisure & Sport Studies, Hoseo University, Asan, KoreaPURPOSE The purpose of this study was to analyze the effects of aerobic exercise on the expression of synaptic vesicle transporter and antioxidant enzymes in obesity and to investigate the feasibility of exercise training to reduce AD pathogenesis in the 3xTg-AD mice fed a high fat diet. METHODS Male 3 month old 3xTg-AD mice were divided into standard chow(SC, n=10), standard chow+exercise (SC-EXE, n=10), high fat diet (HFD, n=10), and high fat diet+exercise (HFD-EXE, n=10) groups. EXE mice were subjected to treadmill running at a moderate intensity with duration of 30 minutes per day and frequency of 5 days per week for 12 weeks. HFD mice were fed a 60% fat HFD during the same period. Mice were sacrificed and immunohistology and western blot analysis were performed. RESULTS Compared with the SC mice, the HFD mice had significantly higher levels of Aβ (p<.01), p-tau/t-tau (p<.01) and defects of Vglut1 (p<.05), VGAT (p<.05), postsynaptic density 95 (p<.01) and GPX (p<.05) in the hippocampus. On the other hand, we found that treadmill running attenuated HFD-induced exacerbations of Aβ (p<.01), p-tau/t-tau (p<.05) and defects of Vglut1 (p<.01), Synaptophysin (p<.05), SOD1 (p<.05) in the hippocampus. CONCLUSIONS High fat diet-induced obesity resulted in increased AD neuropathology and decreased synaptic vesicle transporter and antioxidant enzyme in the hippocampus of 3xTg-AD mice. However, aerobic exercise delayed AD-like disease progression, alleviated impaired synaptic function and the decreased expression of antioxidant enzymes in the hippocampus.http://www.ksep-es.org/upload/pdf/es-29-2-178.pdfhigh fat dietexercisesynaptic vesicle transporterantioxidant enzymesalzheimer’s disease
collection DOAJ
language Korean
format Article
sources DOAJ
author Dong-Hyun Kim
In-Jae Kim
spellingShingle Dong-Hyun Kim
In-Jae Kim
Effect of Moderate Intensity Exercise on Synaptic Vesicle Transporter and Antioxidant Enzyme Expression in High Fat Diet Fed 3xTg Mice
운동과학
high fat diet
exercise
synaptic vesicle transporter
antioxidant enzymes
alzheimer’s disease
author_facet Dong-Hyun Kim
In-Jae Kim
author_sort Dong-Hyun Kim
title Effect of Moderate Intensity Exercise on Synaptic Vesicle Transporter and Antioxidant Enzyme Expression in High Fat Diet Fed 3xTg Mice
title_short Effect of Moderate Intensity Exercise on Synaptic Vesicle Transporter and Antioxidant Enzyme Expression in High Fat Diet Fed 3xTg Mice
title_full Effect of Moderate Intensity Exercise on Synaptic Vesicle Transporter and Antioxidant Enzyme Expression in High Fat Diet Fed 3xTg Mice
title_fullStr Effect of Moderate Intensity Exercise on Synaptic Vesicle Transporter and Antioxidant Enzyme Expression in High Fat Diet Fed 3xTg Mice
title_full_unstemmed Effect of Moderate Intensity Exercise on Synaptic Vesicle Transporter and Antioxidant Enzyme Expression in High Fat Diet Fed 3xTg Mice
title_sort effect of moderate intensity exercise on synaptic vesicle transporter and antioxidant enzyme expression in high fat diet fed 3xtg mice
publisher The Korean Society of Exercise Physiology
series 운동과학
issn 1226-1726
2384-0544
publishDate 2020-05-01
description PURPOSE The purpose of this study was to analyze the effects of aerobic exercise on the expression of synaptic vesicle transporter and antioxidant enzymes in obesity and to investigate the feasibility of exercise training to reduce AD pathogenesis in the 3xTg-AD mice fed a high fat diet. METHODS Male 3 month old 3xTg-AD mice were divided into standard chow(SC, n=10), standard chow+exercise (SC-EXE, n=10), high fat diet (HFD, n=10), and high fat diet+exercise (HFD-EXE, n=10) groups. EXE mice were subjected to treadmill running at a moderate intensity with duration of 30 minutes per day and frequency of 5 days per week for 12 weeks. HFD mice were fed a 60% fat HFD during the same period. Mice were sacrificed and immunohistology and western blot analysis were performed. RESULTS Compared with the SC mice, the HFD mice had significantly higher levels of Aβ (p<.01), p-tau/t-tau (p<.01) and defects of Vglut1 (p<.05), VGAT (p<.05), postsynaptic density 95 (p<.01) and GPX (p<.05) in the hippocampus. On the other hand, we found that treadmill running attenuated HFD-induced exacerbations of Aβ (p<.01), p-tau/t-tau (p<.05) and defects of Vglut1 (p<.01), Synaptophysin (p<.05), SOD1 (p<.05) in the hippocampus. CONCLUSIONS High fat diet-induced obesity resulted in increased AD neuropathology and decreased synaptic vesicle transporter and antioxidant enzyme in the hippocampus of 3xTg-AD mice. However, aerobic exercise delayed AD-like disease progression, alleviated impaired synaptic function and the decreased expression of antioxidant enzymes in the hippocampus.
topic high fat diet
exercise
synaptic vesicle transporter
antioxidant enzymes
alzheimer’s disease
url http://www.ksep-es.org/upload/pdf/es-29-2-178.pdf
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