تاثیر شش هفته تمرین تناوبی شدید و کورکومین بر سطوح گلوکز و بیان ژن BMP-2 در عضله صاف عروقی موشهای صحرایی نر دیابتی
الموضوعات : فصلنامه زیست شناسی جانوری
1 - گروه فیزیولوژی ورزشی دانشکده علوم ورزشی، دانشگاه شهید چمران اهواز، اهواز، ایران
2 - گروه تربیت بدنی، دانشکده علوم انسانی، دانشگاه آزاد اسلامی واحد اهواز، ایران
الکلمات المفتاحية: تمرین تناوبي, BMP2 , كوركومين, ديابت,
ملخص المقالة :
مطالعه ي حاضر با هدف بررسي تاثير شش هفته تمرين تناوبي و مصرف كوركومين بر بیان ژن BMP2 در عضله صاف عروقی موشهاي صحرايي نر نژاد ويستار انجام شد. در يك كارآزمايي تجربي تعداد 30 سر موش صحرايي نر ويستار به طور تصادفي به شش گروه (هر گروه 5 سر موش) كنترل، ديابت، سالم تمرين تناوبي، ديابت تمرين تناوبي، ديابت كوركومين و ديابت تمرين كوركومين تقسيم شدند. ديابت با تزريق درون صفاقي سم استرپتوزوتوسين (50 ميليگرم به ازاي هر كيلوگرم) القاء شد. تمرين تناوبي شامل 12-5 وهله كار شديد (75 تا 100 درصد بيشينه سرعت) 60 ثانيهاي با فواصل استراحت فعال 75 ثانيه اي شش روز در هفته به مدت شش هفته بود. كوركومين با دوز 50 ميليگرم در كيلوگرم از وزن بدن به روش گاواژ به حيوانات خورانده شد. پس از شش هفته حيوانات بي هوش و نمونههاي خوني از قلب آنها جمعآوري شد. دادهها با استفاده از آزمون آماري ANOVA و آزمون تعقيبي بن فروني تحليل شدند. القاء ديابت بیان ژنBMP2 در عضله صاف عروقی موش صحرایی نر را افزایش داد. تمرين تناوبي بیان ژن BMP2 عضله صاف عروقی موش مبتلا به دیابت را کاهش داد. شش هفته مصرف كوركومين بیان ژن BMP2 عضله صاف عروقی موش مبتلا به دیابت را كاهش داد. به طور كلي نتايج مطالعهي حاضر نشان داد كه تمرين تناوبي و كوركومين، اختلالات ديابت ناشی از بیان ژن BMP2 و کلسیفیکاسیون و عوارض آن را بهبود ميدهند.
1. Adams V., Erbs S. 2014. Influence of exercise training on HDL function. Clinical Lipidology, 9(4):395-398.
2. Ahmadi S., Sheikh R. 2023. Effect of incremental interval training on levels of Fasl protein in lung tissue of mature male Wistar rats: Does exercise training reduce lung inflammation? Journal of Exercise and Organ Cross Talk, 3(2):66-72.
3. Association A.D. 2020. 2. Classification and Diagnosis of Diabetes: Standards of Medical Care in Diabetes-2020. Diabetes Care, 43(Suppl 1):S14.
4. Basic-Jukic N., Gulin M., Hudolin T., Kastelan Z., Katalinic L., Coric M., Jelakovic B. 2016. Expression of BMP-2 in vascular endothelial cells of recipient may predict delayed graft function after renal transplantation. Kidney and Blood Pressure Research, 41(6):781-793.
5. Bostani M., Sheikh R. 2023. The effect of different degrees of dehydration on the plasma levels of creatine kinase and lactate dehydrogenase of professional wrestlers in Ahvaz. Sports Science Quarterly, 15(49): 49-70.
6. Chen N.X., Duan D., O'Neill K.D., Moe S.M. 2006. High glucose increases the expression of Cbfa1 and BMP-2 and enhances the calcification of vascular smooth muscle cells. Nephrology Dialysis Transplantation, 21(12):3435-3442.
7. Chuengsamarn S., Rattanamongkolgul S., Luechapudiporn R., Phisalaphong C., Jirawatnotai S. 2012. Curcumin extract for prevention of type 2 diabetes. Diabetes Care, 35(11):2121-2127.
8. Fukui N., Zhu Y., Maloney W.J., Clohisy J., Sandell L.J. 2003. Stimulation of BMP-2 expression by pro-inflammatory cytokines IL-1 and TNF-α in normal and osteoarthritic chondrocytes. JBJS, 85(suppl3):59-66.
9. Hruska K.A., Mathew S., Saab G. 2005. Bone morphogenetic proteins in vascular calcification. Circulation research, 97(2):105-114.
10. Iijima H., Ito A., Nagai M., Tajino J., Yamaguchi S., Kiyan W., Aoyama T. 2017. Physiological exercise loading suppresses post-traumatic osteoarthritis progression via an increase in bone morphogenetic proteins expression in an experimental rat knee model. Osteoarthritis and Cartilage, 25(6):964-975.
11. Johnson M.L., Harnish K., Nusse R., Van Hul W. 2004. LRP5 and Wnt signaling: a union made for bone. Journal of Bone and Mineral Research, 19(11):1749-1757.
12. Kurita T., Makino Y. 2013. Novel curcumin oral delivery systems. Anticancer Res, 33(7):2807-2821.
13. Li M., Wu P., Shao J., Ke Z., Li D., Wu J. 2016. Losartan inhibits vascular calcification by suppressing the BMP2 and Runx2 expression in rats in vivo. Cardiovascular Toxicology, 16(2):172-181.
14. Lingli Z., Jianmin G., Jun Z. 2016. Exercise and Mechanical Load Influence the Bone Metabolism through Bone Morphogenetic Protein. Chinese Journal of Cell Biology, 4:16.
15. Little J.P., Safdar A., Wilkin G.P., Tarnopolsky M.A., Gibala M.J. 2010. A practical model of low-volume high-intensity interval training induces mitochondrial biogenesis in human skeletal muscle: potential mechanisms. The Journal of Physiology, 588(Pt 6):1011-1022.
16. Nguyen-Yamamoto L., Tanaka K.I., St–Arnaud R., Goltzman D. 2019. Vitamin D–regulated osteocytic sclerostin and BMP2 modulate uremic extraskeletal calcification. JCI Insight, 4(13):e126467.
17. Nomura S., Takano-Yamamoto T. 2000. Molecular events caused by mechanical stress in bone. Matrix Biology, 19(2):91-96.
18. Park J.k., Jang H., Hwang S., Kim E.-J., Kim D.E., Oh K.B., Inoue H. 2014. ER stress-inducible ATF3 suppresses BMP2-induced ALP expression and activation in MC3T3-E1 cells. Biochemical and Biophysical Research Communications, 443(1):333-338.
19. Pulido-Moran M., Moreno-Fernandez J., Ramirez-Tortosa C., Ramirez-Tortosa M. 2016. Curcumin and health. Molecules, 21(3):264.
20. Ravindran J., Prasad S., Aggarwal B.B. 2009. Curcumin and cancer cells: how many ways can curry kill tumor cells selectively? The AAPS Journal, 11(3):495-510.
21. Sage A., Tintut Y., Garfinkel A., Demer L. 2009. Systems biology of vascular calcification. Trends in Cardiovascular Medicine, 19(4):118-123.
22. Sato A.Y.S., Bub G.L., Campos A.H. 2014. BMP-2 and-4 produced by vascular smooth muscle cells from atherosclerotic lesions induce monocyte chemotaxis through direct BMPRII activation. Atherosclerosis, 235(1):45-55.
23. Scalbert A., Manach C., Morand C., Rémésy C., Jiménez L. 2005. Dietary polyphenols and the prevention of diseases. Critical Reviews in Food Science and Nutrition, 45(4):287-306.
24. Sheikh R., Gallehdari M. 2023. The effect of herbal supplement and exercise training on plasma lipid profile in diabetic male rats. Journal of Exercise and Organ Cross Talk, 3(2):86-92.
25. Sheikh R., Habibi A. 2023. Exercise training increases the chance of the body's immune system to fight against the disease of Covid-19: A mini review of exercise, immune system and myokines. Journal of Exercise and Organ Cross Talk, 3(3):150-155.
26. Sheikh R., Nikbakht M. 2023. Physical activity and apoptosis, a brief review of previous findings. doi: 10.22059/sshr.2023.360921.1097
27. Sheikh R., Shakeryan S., Tabatbaei S. R.F., Habibi A. 2023. Moderate and high-intensity interval training protect against diabetes-induced modulation of hepatic CD86 and CD206 expression associated with the amelioration of insulin resistance and inflammation in rats. Immunobiology, 228(6):152745.
28. Singh S. 2007. From exotic spice to modern drug? Cell, 130(5):765-768.
29. Soleimani N., Gallehdari M., Sheikh R. 2023. Effect of six weeks of interval training and curcumin consumption on apolipoprotein A and B in diabetic male rats. Journal of Exercise and Organ Cross Talk, 3(2):73-80.
30. Son H.E., Kim E.J., Jang W.G. 2018. Curcumin induces osteoblast differentiation through mild-endoplasmic reticulum stress-mediated such as BMP2 on osteoblast cells. Life Sciences, 193:34-39.
31. Su X., Ao L., Shi Y., Johnson T.R., Fullerton D.A., Meng X. 2011. Oxidized low density lipoprotein induces bone morphogenetic protein-2 in coronary artery endothelial cells via Toll-like receptors 2 and 4. Journal of Biological Chemistry, 286(14):12213-12220.
32. Sun M., Chang Q., Xin M., Wang Q., Li H., Qian J. 2017. Endogenous bone morphogenetic protein 2 plays a role in vascular smooth muscle cell calcification induced by interleukin 6 in vitro. International Journal of Immunopathology and Pharmacology, 30(3):227-237.
33. Sun Z., Wan G., Liang S., Qian C. 2019. Effect of bone morphogenetic protein-2 on diabetic retinopathy and its mechanism of action. Tropical Journal of Pharmaceutical Research, 18(5): 1069-1076.
34. Trzeciakiewicz A., Habauzit V., Horcajada M.N. 2009. When nutrition interacts with osteoblast function: molecular mechanisms of polyphenols. Nutrition Research Reviews, 22(1):68-81.
35. Urist M.R. 1965. Bone: formation by autoinduction. Science, 150(3698):893-899.
36. Van Der Horst G., van der Werf S.M., Farih‐Sips H., van Bezooijen R.L., Löwik C.W., Karperien M. 2005. Downregulation of Wnt signaling by increased expression of Dickkopf‐1 and‐2 is a prerequisite for late‐stage osteoblast differentiation of KS483 cells. Journal of Bone and Mineral Research, 20(10):1867-1877.
37. Wang L., Zhang B., Huang F., Liu B., Xie, Y. 2016. Curcumin inhibits lipolysis via suppression of ER stress in adipose tissue and prevents hepatic insulin resistance. Journal of Lipid Research, 57(7):1243-1255.
38. Westendorf J.J., Kahler R.A., Schroeder T.M. 2004. Wnt signaling in osteoblasts and bone diseases. Gene, 341: 19-39.
39. Yao Y., Bennett B.J., Wang X., Rosenfeld M.E., Giachelli C., Lusis A.J., Boström K.I. 2010. Inhibition of bone morphogenetic proteins protects against atherosclerosis and vascular calcification. Circulation Research, 107(4):485-494.
40. Zhang L., Sun H., Liu S., Gao J., Xia J. 2019. Glycemic variability is associated with vascular calcification by the markers of endoplasmic reticulum stress-related apoptosis, Wnt1, galectin-3 and BMP-2. Diabetology and Metabolic Syndrome, 11(1):67.