Search published articles


Showing 23 results for sadeghi

Somayeh Madanipour, Abbas Sadeghi, Hasan Purrazi,
Volume 24, Issue 4 (10-2024)
Abstract

Background: Adipogenesis is a dynamic process that leads to the phenotype of mature fat cells and plays a significant role in obesity and diabetes. The present study investigates the effect of Eight –Weeks of High-Intensity Interval Training (HIIT) and L -carnitine Consumption on the expression of BMP7 protein in visceral adipose tissue in diabetic rats.
Methods: In an experimental clinical-intervention study, 50  male Wistar rats were divided into 5 equal groups of control (C), diabetic (D), supplemental diabetic (D + LC), diabetic with exercise (D + T), supplement and exercise (D + LC + T). The training program consisted of eight weeks, 5 sessions per week (6 to 12 2-minute sessions with an intensity of 85-90% of the maximum speed). The subjects received 30 mg/kg body weight L-carnitine through drinking water. Visceral fat was extracted and the expression level of BMP7 protein was assessed using Western Blotting. Data analysis was performed by one-way ANOVA and Tukey post hoc test at a significant level of (P< 0.05).
Results: The results showed that the expression of BMP7, the adipogenesis stimulating protein, in (D + T) and (D + LC + T) groups increased significantly (P< 0.001).
Conclusion: According to the results, it seems that HIIT exercise alone and with L-carnitine Consumption is more effective in the expression of protein associated with adipogenesis expression in visceral fat. However, a clear statement requires further research in this area.
Atefeh Khalaji, Abbas Sadeghi, Somayeh Madanipour,
Volume 24, Issue 5 (12-2024)
Abstract

Background: Understanding adipogenesis, the process of adipocyte development, may provide new insights to treat type II diabetes and related metabolic diseases. The present study investigates the effect of eight weeks of moderate-intensity continuous training and L-carnitine supplementation on Wnt10b protein expression related to visceral adipose tissue adipogenesis in streptozotocin (STZ)-induced diabetes in larg rats.
Methods: In an experimental clinical-intervention study, 50 large laboratory mice were divided into 5 equal groups of control (C), diabetic (D), supplemental diabetic (D + LC), diabetic with exercise (D + T), supplemental diabetic with exercise (D + LC + T). The training program consisted of three times a week for 30 minutes on a treadmill at a speed of 15 meters per minute. Five days a week, 30 mg/kg of L-carnitine was given through drinking water. Expression of Wnt10b protein at visceral fat was measured by western blot method. Data analysis was performed with one-way analysis of variance and Tukey's post hoc tests at a significant level (P< 0.05).
Results: The results showed that the expression of Wnt10b protein, the Lipolysis inhibitory protein, in both (D+LC+T) groups and (D+T) decreased significantly (P< 0.001).
Conclusion: According to the results, it seems that MICT exercise with L-carnitine supplement and alone is more effective in decreasing the expression of protein associated with adipogenesis in visceral fat. However, a clear statement requires further research in this area.
 

Anita Rezaee, Morteza Sadeghi,
Volume 26, Issue 2 (7-2026)
Abstract

Background: Diabetes mellitus is recognized as a complex metabolic syndrome primarily characterized by elevated blood glucose levels (hyperglycemia). α-glucosidase, located in the microvilli of the small intestine, play a pivotal role in the hydrolysis of complex carbohydrates into absorbable monosaccharides. However, the use of common chemical inhibitors of this enzyme, such as metformin, is frequently associated with undesirable side effects. The present research aims to evaluate the inhibitory potential of compounds isolated from Fumaria officinalis on α-glucosidase activity, utilizing computational (in silico) approaches.
Methods: This study was designed and executed with a descriptive-analytical approach, based on computational methodologies. Initially, the 3D structures of key compounds identified from Fumaria officinalis were retrieved from the PubChem database. Simultaneously, the crystal structure of the α-glucosidase was downloaded from the Protein Data Bank (PDB). The toxicity profile of the compounds was predicted using Toxtree and Protox II tools, and drug-likeness properties, based on Lipinski’s rules, were assessed via the SwissADME server. Finally, molecular docking studies were conducted to investigate the interactions between the enzyme and the compounds of interest, employing AutoDock Tools 1.5.6 and Molegro Virtual Docker 6.0 software. Analysis of the molecular interactions resulting from docking was performed with Discovery Studio 3.5 software.
Results: The findings of this research indicate that all selected compounds from Fumaria officinalis, while adhering to Lipinski’s rules and showing no predicted toxicity, exhibited favorable binding energies, positioning them as potential candidates for α-glucosidase inhibition. Among the evaluated compounds, Fumaricine and Chlorogenic Acid demonstrated the lowest binding energies, -7.18 and -7.83 kcal/mol, respectively, thus exhibiting the highest inhibitory potential compared to other compounds. Notably, the binding energies of these two compounds were significantly more negative than that of the standard inhibitor, metformin, indicating their stronger binding affinity to the enzyme’s active site.
Conclusion: Based on the results obtained from this computational study, it can be inferred that Fumaricine and Chlorogenic Acid, as the most prominent compounds found in Fumaria officinalis, act as more effective inhibitors due to their ability to form stronger hydrogen and hydrophobic interactions with key amino acids in the α-glucosidase enzyme’s active site. Therefore, it is suggested that further in vitro and in vivo studies be conducted on these compounds to comprehensively validate their potential in the prevention and management of diabetes mellitus.
 



Page 2 from 2     

© 2026 , Tehran University of Medical Sciences, CC BY-NC 4.0

Designed & Developed by: Yektaweb