Effect of a 6-week Aerobic Exercise Program on High-mobility Group Box 1 Gene Expression in Aortic Tissue of Diabetic Rats

Aims: Type 2 diabetes is a rising problem and a significant risk factor for small and large vessel disease. The present study aims to investigate the effect of a 6-week aerobic exercise program on High-mobility Group Box 1 (HMGB1) gene expression in aortic tissue of diabetic rats. Methods & Mate...

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Main Authors: Samira Hassanpour Soleimani, Asiyeh Abbassi Daloii, Ahmed Abdi, Sheerin Zilaei Bori
Format: Article
Language:English
Published: Gonabad University of Medical Sciences (GMU) 2020-12-01
Series:Ufuq-i Dānish
Subjects:
Online Access:http://hms.gmu.ac.ir/article-1-3530-en.html
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spelling doaj-d155044e5c26447690cc71c8a8bb2c022021-05-29T07:15:24ZengGonabad University of Medical Sciences (GMU)Ufuq-i Dānish1735-18552252-08052020-12-012718297Effect of a 6-week Aerobic Exercise Program on High-mobility Group Box 1 Gene Expression in Aortic Tissue of Diabetic RatsSamira Hassanpour Soleimani0Asiyeh Abbassi Daloii1Ahmed Abdi2Sheerin Zilaei Bori3 Department of Exercise Physiology, Ayatollah Amoli Branch, Islamic Azad University, Amol, Iran. Department of Exercise Physiology, Ayatollah Amoli Branch, Islamic Azad University, Amol, Iran. Department of Exercise Physiology, Ayatollah Amoli Branch, Islamic Azad University, Amol, Iran. Department of Physical Education & Sport Sciences, Masjed-Soliman Branch, Islamic Azad University, Masjed-Soleiman, Iran. Aims: Type 2 diabetes is a rising problem and a significant risk factor for small and large vessel disease. The present study aims to investigate the effect of a 6-week aerobic exercise program on High-mobility Group Box 1 (HMGB1) gene expression in aortic tissue of diabetic rats. Methods & Materials: In this experimental study, 40 male rats aged 8 weeks were randomly selected. Once familiarized with the exercise protocol, they were divided into four groups of healthy-control (n=10), diabetic-control (n=10), healthy-exercise (n=10), and diabetic-exercise (n=10). Type 2 diabetes was first induced, and then the rats run on a treadmill for 6 weeks, 5 sessions per week. After 12-14 h of fasting and 72 h after the last session, aortic tissue sampling was performed for HMGB1 analysis by quantitative real-time polymerase chain reaction (q-RT PCR) technique. Data analysis was performed using 1-way ANOVA and Tukey post hoc test at the significant level of P<0.05. Findings: Induction of type 2 diabetes led to a significant increase in HMGB1 gene expression in rats (P=0.001), significantly reduced following aerobic exercise (P=0.003). Aerobic exercise also reduced the expression of the HMGB1 gene in healthy rats (P=0.000). Conclusion: Aerobic exercise may have a protective effect by reducing the HMGB1 gene expression in the aortic tissue of diabetic rats. It can be used as an effective non-pharmacological method to improve diabetes-induced inflammation and prevent vascular disorders.http://hms.gmu.ac.ir/article-1-3530-en.htmldiabetesregular aerobic exercisepyroptosishmgb1 gene
collection DOAJ
language English
format Article
sources DOAJ
author Samira Hassanpour Soleimani
Asiyeh Abbassi Daloii
Ahmed Abdi
Sheerin Zilaei Bori
spellingShingle Samira Hassanpour Soleimani
Asiyeh Abbassi Daloii
Ahmed Abdi
Sheerin Zilaei Bori
Effect of a 6-week Aerobic Exercise Program on High-mobility Group Box 1 Gene Expression in Aortic Tissue of Diabetic Rats
Ufuq-i Dānish
diabetes
regular aerobic exercise
pyroptosis
hmgb1 gene
author_facet Samira Hassanpour Soleimani
Asiyeh Abbassi Daloii
Ahmed Abdi
Sheerin Zilaei Bori
author_sort Samira Hassanpour Soleimani
title Effect of a 6-week Aerobic Exercise Program on High-mobility Group Box 1 Gene Expression in Aortic Tissue of Diabetic Rats
title_short Effect of a 6-week Aerobic Exercise Program on High-mobility Group Box 1 Gene Expression in Aortic Tissue of Diabetic Rats
title_full Effect of a 6-week Aerobic Exercise Program on High-mobility Group Box 1 Gene Expression in Aortic Tissue of Diabetic Rats
title_fullStr Effect of a 6-week Aerobic Exercise Program on High-mobility Group Box 1 Gene Expression in Aortic Tissue of Diabetic Rats
title_full_unstemmed Effect of a 6-week Aerobic Exercise Program on High-mobility Group Box 1 Gene Expression in Aortic Tissue of Diabetic Rats
title_sort effect of a 6-week aerobic exercise program on high-mobility group box 1 gene expression in aortic tissue of diabetic rats
publisher Gonabad University of Medical Sciences (GMU)
series Ufuq-i Dānish
issn 1735-1855
2252-0805
publishDate 2020-12-01
description Aims: Type 2 diabetes is a rising problem and a significant risk factor for small and large vessel disease. The present study aims to investigate the effect of a 6-week aerobic exercise program on High-mobility Group Box 1 (HMGB1) gene expression in aortic tissue of diabetic rats. Methods & Materials: In this experimental study, 40 male rats aged 8 weeks were randomly selected. Once familiarized with the exercise protocol, they were divided into four groups of healthy-control (n=10), diabetic-control (n=10), healthy-exercise (n=10), and diabetic-exercise (n=10). Type 2 diabetes was first induced, and then the rats run on a treadmill for 6 weeks, 5 sessions per week. After 12-14 h of fasting and 72 h after the last session, aortic tissue sampling was performed for HMGB1 analysis by quantitative real-time polymerase chain reaction (q-RT PCR) technique. Data analysis was performed using 1-way ANOVA and Tukey post hoc test at the significant level of P<0.05. Findings: Induction of type 2 diabetes led to a significant increase in HMGB1 gene expression in rats (P=0.001), significantly reduced following aerobic exercise (P=0.003). Aerobic exercise also reduced the expression of the HMGB1 gene in healthy rats (P=0.000). Conclusion: Aerobic exercise may have a protective effect by reducing the HMGB1 gene expression in the aortic tissue of diabetic rats. It can be used as an effective non-pharmacological method to improve diabetes-induced inflammation and prevent vascular disorders.
topic diabetes
regular aerobic exercise
pyroptosis
hmgb1 gene
url http://hms.gmu.ac.ir/article-1-3530-en.html
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