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Showing 2 results for Subcutaneous Adipose Tissue

Farzaneh Karimi, Farhad Daryanoosh, Mohsen Salesi, Javad Nemati,
Volume 19, Issue 6 (8-2020)
Abstract

Background: Obesity and type 2 diabetes can impair the function of cells, including CREB and CRTC2 proteins, which are important for regulating adipose tissue metabolism. Therefore, the purpose of the present study was to investigate the effect of eight weeks of high intensity interval training (HIIT) on CREB and CRTC2 proteins levels in subcutaneous adipose tissue of obese rats with type 2 diabetes.

Methods: In this experimental study, 12 head two-month-old Sprague-Dawley rats with a mean weight of 300±20 g were selected. After diabetic induction with Streptozotocin and Nicotinamide, rats were randomly assigned to two groups, diabetic training (6 heads) and diabetic control (6 heads). The training groups performed the training program 4 days a week for 8 weeks, including 5 interval 4-minute with an intensity of 85 to 95% of the maximum speed, and 3-minute active rest periods with an intensity of 50 to 60% of the maximum speed; SPSS software version 23 and independent t-test were used to analyze the data.
Result: After eight weeks of HIIT training, no significant change in CREB protein level was observed in the training group compared to the control (P<0.22); However, a significant increase in CRTC2 protein level was observed in the training group compared to the control (P<0.005);
Conclusion: HIIT training did not result in a change in CREB protein level. But, it was able to increase the CRTC2 protein level, which could lead to the regulation of adipose tissue metabolism in diabetic subjects.
Seyedeh Sogand Hosseini, Mohammedreza Esmaelzadeh Toloee,
Volume 21, Issue 1 (3-2021)
Abstract

Background: TORC1 protein is an important factor in regulating adipose tissue metabolism. Type 2 diabetes can lead to dysfunction and the development of obesity. Therefore, the aim of the present study was to investigate the effect of eight weeks of high-intensity interval training (HIIT) and endurance on blood glucose and TORC1 protein content in subcutaneous adipose tissue of obese with type 2 diabetes rats.
Methods: In this study, 18 head 2 Sprague-Dawley male rats with a mean weight of 270±30 g were selected. After becoming type 1 diabetic through streptozotocin and Nicotine amide solution, they were randomly divided into 3 groups: 1) HIIT training 2) endurance training and 3) control (6 heads per group). Exercise groups exercised 4 days a week for 8 weeks according to HIIT and endurance training programs. SPSS software version 23, one-way ANOVA and Tukey post hoc test were used to analyze the data.
Result: Eight weeks of HIIT and endurance training resulted in a significant decrease in blood glucose level (p<0.0001) and a significant increase in TORC1 protein content (P<0.0001) compared to the control group.
Conclusion: HIIT and endurance training lowered blood glucose levels and increase TORC1 protein content, which this training can be a suitable and non-invasive treatment to control diabetes and also regulate adipose tissue metabolism in type 2 diabetics who are prone to obesity.
 

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