The Effect of Endurance Training on Fibronectin Gene Expression of the Sciatic Nerve in Diabetic Rats

Diabetic neuropathy can cause disorders in axon transmission, changes in the extracellular matrix, and peripheral nerve damages. However, its mechanism, along with the beneficial effects of exercise on these disorders is not entirely clear. The aim of the current study was to assess changes in fibr...

Full description

Bibliographic Details
Main Authors: Nahid Jalilian Hamed, Reza Gharakhanlou, Maghsoud Peeri
Format: Article
Language:English
Published: Tehran University of Medical Sciences 2020-06-01
Series:Acta Medica Iranica
Subjects:
Online Access:https://acta.tums.ac.ir/index.php/acta/article/view/8239
id doaj-c5dae53c8e894675859715332ba3a17e
record_format Article
spelling doaj-c5dae53c8e894675859715332ba3a17e2020-11-25T02:35:51ZengTehran University of Medical SciencesActa Medica Iranica0044-60251735-96942020-06-0158210.18502/acta.v58i2.37098239The Effect of Endurance Training on Fibronectin Gene Expression of the Sciatic Nerve in Diabetic RatsNahid Jalilian Hamed0Reza Gharakhanlou1Maghsoud Peeri2Department of Exercise Physiology, Central Tehran Branch, Islamic Azad University, Tehran, Iran.Department of Exercise Physiology, Tarbiat Modares University, Tehran, Iran.Department of Exercise Physiology, Central Tehran Branch, Islamic Azad University, Tehran, Iran. Diabetic neuropathy can cause disorders in axon transmission, changes in the extracellular matrix, and peripheral nerve damages. However, its mechanism, along with the beneficial effects of exercise on these disorders is not entirely clear. The aim of the current study was to assess changes in fibronectin mRNA gene expression level of the sciatic nerve in rats with streptozotocin-induced diabetes after endurance training. Eighteen male Wistar rats (10 weeks old with 250±20 gr weight) were randomly assigned to three groups, including healthy, induced diabetes and induced diabetes plus endurance training. Induction of diabetes was conducted using an intraperitoneal injection of a single dose of streptozotocin (STZ). Neuropathy was confirmed using the behavioral tests. Rats in induced diabetes plus training group had 8 weeks of moderate and increasing intensity endurance training on the treadmill. The Fibronectin mRNA gene expression level of the sciatic nerve was assessed using Real-time-PCR. Changes in fibronectin protein and myelin thickness were measured by immunohistochemistry and luxol fast blue staining. The mean and standard deviation was used to report descriptive data. Data were entered into SPSS 22. Fibronectin mRNA gene expression level (1.90) of sciatic nerve fibronectin protein and myelin thickness reduced significantly due to diabetes (P<0.05). Eight weeks of endurance training increased fibronectin gene expression of sciatic nerve fibronectin protein and prevented further destruction of myelin, which was statistically significant. The results showed that diabetes leads to changes in the extracellular matrix and the reduction of the sciatic nerve myelin thickness. Endurance training as a non-drug strategy is effective in preventing these damages. https://acta.tums.ac.ir/index.php/acta/article/view/8239Endurance trainingFibronectinDiabetic neuropathy
collection DOAJ
language English
format Article
sources DOAJ
author Nahid Jalilian Hamed
Reza Gharakhanlou
Maghsoud Peeri
spellingShingle Nahid Jalilian Hamed
Reza Gharakhanlou
Maghsoud Peeri
The Effect of Endurance Training on Fibronectin Gene Expression of the Sciatic Nerve in Diabetic Rats
Acta Medica Iranica
Endurance training
Fibronectin
Diabetic neuropathy
author_facet Nahid Jalilian Hamed
Reza Gharakhanlou
Maghsoud Peeri
author_sort Nahid Jalilian Hamed
title The Effect of Endurance Training on Fibronectin Gene Expression of the Sciatic Nerve in Diabetic Rats
title_short The Effect of Endurance Training on Fibronectin Gene Expression of the Sciatic Nerve in Diabetic Rats
title_full The Effect of Endurance Training on Fibronectin Gene Expression of the Sciatic Nerve in Diabetic Rats
title_fullStr The Effect of Endurance Training on Fibronectin Gene Expression of the Sciatic Nerve in Diabetic Rats
title_full_unstemmed The Effect of Endurance Training on Fibronectin Gene Expression of the Sciatic Nerve in Diabetic Rats
title_sort effect of endurance training on fibronectin gene expression of the sciatic nerve in diabetic rats
publisher Tehran University of Medical Sciences
series Acta Medica Iranica
issn 0044-6025
1735-9694
publishDate 2020-06-01
description Diabetic neuropathy can cause disorders in axon transmission, changes in the extracellular matrix, and peripheral nerve damages. However, its mechanism, along with the beneficial effects of exercise on these disorders is not entirely clear. The aim of the current study was to assess changes in fibronectin mRNA gene expression level of the sciatic nerve in rats with streptozotocin-induced diabetes after endurance training. Eighteen male Wistar rats (10 weeks old with 250±20 gr weight) were randomly assigned to three groups, including healthy, induced diabetes and induced diabetes plus endurance training. Induction of diabetes was conducted using an intraperitoneal injection of a single dose of streptozotocin (STZ). Neuropathy was confirmed using the behavioral tests. Rats in induced diabetes plus training group had 8 weeks of moderate and increasing intensity endurance training on the treadmill. The Fibronectin mRNA gene expression level of the sciatic nerve was assessed using Real-time-PCR. Changes in fibronectin protein and myelin thickness were measured by immunohistochemistry and luxol fast blue staining. The mean and standard deviation was used to report descriptive data. Data were entered into SPSS 22. Fibronectin mRNA gene expression level (1.90) of sciatic nerve fibronectin protein and myelin thickness reduced significantly due to diabetes (P<0.05). Eight weeks of endurance training increased fibronectin gene expression of sciatic nerve fibronectin protein and prevented further destruction of myelin, which was statistically significant. The results showed that diabetes leads to changes in the extracellular matrix and the reduction of the sciatic nerve myelin thickness. Endurance training as a non-drug strategy is effective in preventing these damages.
topic Endurance training
Fibronectin
Diabetic neuropathy
url https://acta.tums.ac.ir/index.php/acta/article/view/8239
work_keys_str_mv AT nahidjalilianhamed theeffectofendurancetrainingonfibronectingeneexpressionofthesciaticnerveindiabeticrats
AT rezagharakhanlou theeffectofendurancetrainingonfibronectingeneexpressionofthesciaticnerveindiabeticrats
AT maghsoudpeeri theeffectofendurancetrainingonfibronectingeneexpressionofthesciaticnerveindiabeticrats
AT nahidjalilianhamed effectofendurancetrainingonfibronectingeneexpressionofthesciaticnerveindiabeticrats
AT rezagharakhanlou effectofendurancetrainingonfibronectingeneexpressionofthesciaticnerveindiabeticrats
AT maghsoudpeeri effectofendurancetrainingonfibronectingeneexpressionofthesciaticnerveindiabeticrats
_version_ 1724803044876484608