Search published articles


Showing 2 results for Moghaddami

Elma Tabari, Hamid Mohebbi, Pouran Karimi, Kamilia Moghaddami, Mousa Khalafi,
Volume 18, Issue 4 (4-2019)
Abstract

Background: The purpose of this study was to compare the effects of a 12 weeks interval training with high and moderate intensity on PGC-1α of skeletal muscle in type 2 diabetic male rats.
Methods: 40 male rats were divided into two groups: High fat diet (HFD) (n=32) and standard diet (C) (n=8) for 10 weeks. After inducing type2 diabetes via STZ, 8 diabetic rats (D) and 8 rats in group C rats sacrificed and the remaining 24 Rats were randomly assigned to three groups of diabetic control (DC), moderate intensity interval training (MIIT) and high intensity interval training (HIIT).The MIIT protocol includes 13 bouts of 4-minute activity with equivalent intensity of 60-65% vo2max  and the HIIT protocol includes 10 bouts of 4-minute activity with equivalent intensity of 85-90% vo2max with 2 minute active rest periods that was applied for 12 weeks, 5 sessions per week. Western Blot method was used to measure PGC-1α protein levels.
Results: The results showed that PGC-1α protein levels were significantly lower in the D group compared to the HC group. In contrast, the HIIT protocol resulted in an increase in protein levels of PGC-1α compared to DC2 group. While MICT had no significant effect on protein levels of PGC-1α (P <0.05). Also, there was no significant difference between the two training groups (P<0.05).
Conclusion: It seems that the intensity of interval training plays an important role in the regulation of skeletal muscle PGC-1α and possibly mitochondria biogenesis in type 2 diabetic rats.
 
Maryam Shabani, Mohammad Sherafati Moghadam, Kamilia Moghaddami,
Volume 19, Issue 6 (8-2020)
Abstract

Background: The pathway of insulin messengers is so important that diabetes can lead to disruption of this pathway. However, the aim of this study was to investigate the effect of 8 weeks of endurance training on protein Kinase-B (PKB or AKT) and mechanical target of rapamycin (mTOR) in the left ventricle of the heart of diabetic rats induced by streptozotocin and nicotinamide.
Methods: In this experimental study, 12 head two-month-old Sprague-Dawley rats with a mean weight of 270±20 g were selected. After diabetic induction with streptozotocin and Nicotinamide, rats were randomly assigned to two groups, training and control (6 heads in group each). The rat training program was performed on a treadmill for 8 weeks and 4 sessions per week, including 30 minutes of endurance training with an intensity of about 50 to 70% of the maximum speed. SPSS software and independent t-test were used to analyze the data.
Results: Eight weeks of endurance training resulted in a significant increase in protein Kinase-B content (P=0.03); But no significant change in Protein Mechanistic Target of Rapamycin content was observed in the endurance training group compared to the control (P=0.97).
Conclusion: protein Kinase-B is a key protein for regulating many cellular pathways, which was significantly increased by eight weeks of endurance training. Due to the fact that the content of protein mechanistic target of rapamycin does not change, it is possible that endurance training cannot lead to physiological hypertrophy heart through the mTORC1 pathway.

Page 1 from 1     

© 2025 , Tehran University of Medical Sciences, CC BY-NC 4.0

Designed & Developed by: Yektaweb