The effect of aerobic training and garlic supplementation on heart tissue structure in obese rats
Subject Areas :آسیه عباسی دلویی 1 , Hoda Tabe 2 , Seyed Javad Ziaolhagh 3 , Ali Reza Barari 4
1 - استادیار فیزیولوژی ورزشی، واحد آیت الله آملی، دانشگاه آزاد اسلامی، آمل، ایران
2 - Department of Physical Education and Sport Science, Ayatollah Amoli Branch, Islamic Azad University, Amol, Iran
3 - Department of Exercise Physiology, Islamic Azad University Shahrood Branch, Shahrood, Iran
4 - Department of Physical Education and Sport Science, Ayatollah Amoli Branch, Islamic Azad University, Amol, Iran.
Keywords: Garlic, Obesity, Heart tissue, Rats, Exercise,
Abstract :
Inroduction & Objective: Lifestyle modification, including physical activity and the use of herbal supplements, is an important part of the health, prevention and treatment of obesity and it’s associated with reduction in cardiovascular complications caused by obesity. The aim of this study was to evaluate the effect of aerobic training and garlic supplementation on heart tissue structure in obese rats.Material and Method: To implementation of this experimental research, 25 male rats (5 healthy adult rats and 20 adults obese male Wistar rats) were randomly divided into five groups: control (healthy), obese, obese-garlic, obese-aerobic training and obese-garlic. Aerobic exercises were performed. Supplement groups received garlic supplementation at rate of 250 mg per kg body weight as daily gavage during the intervention period. Aerobic exercise was performed on treadmill, 5 days week for eight weeks. After anesthesia, an autopsy was performed and heart tissue was removed. The changes of heart tissue, Muscle cells, necrosis, inflammation and hyperemia were assessed, the severity and degree of these changes were performed based on microscopic and photomicrographs observations.Results: The results showed that in obese rat’s pathological changes of heart muscle and heart cells were observed in comparison with the control group. Aerobic training and consumption of garlic reduced pathological changes in heart muscle tissue and heart cells. Also, the interaction of aerobic training and garlic supplementation was associated with the improvement of tissue and cellular changes in heart tissue. Conclusion: According to the results, aerobic training with garlic supplementation can probably help improve changes in the structure of heart tissue during obesity.
1.Ahmadi, M., Abbassi-Daloii, A., Ziaolhagh, S. J, Yahyaei, B. (2017). Structural changes of cardiac tissue in response to boldenone supplementation with or without alcoholic extract of jujuba fruit during resistance training in male Wistar rats. Feyz., 21(6); 534-542.
2.Booth, FW., Roberts, CK., Laye, MJ. (2012). Lack of exercise is a major cause of chronic diseases. Compr Physiol., 2(2);1143-211.
3.Campos, D. H., Leopoldo, A. S., Lima-Leopoldo, A. P., Nascimento, A. F., Oliveira-Junior, S. A., Silva, D. C. (2014). Obesity preserves myocardial function during blockade of the glycolytic pathway. Arquivos brasileiros de cardiologia, 103(4); 330–337.
4.Cardelle-Cobas, A, Soria, AC, Corzo, N, Villamiel, M. (2010). A comprehensive survey of garlic functionality. Madrid: Nova Science Publisher, 1(6);12-15.
5.Chess, DJ., Stanley, WC. (2008). Role of diet and fuel overabundance in the development and progression of heart failure. Cardiovascular research, 79(2); 269–278
6.Cho, D. K., Choi, D. H., Cho, J. Y. (2017). Effect of treadmill exercise on skeletal muscle autophagy in rats with obesity induced by a high-fat diet. Journal of Exercise Nutrition & Biochemistry, 21(3); 26–34.
7.Csige, I., Ujvárosy, D., Szabó, Z., Lőrincz, I., Paragh, G., Harangi, M. (2018). The impact of obesity on the cardiovascular system. Journal of diabetes research, 3407306.
8.Eidi, A., Eidi, M., Oryan, S., Esmaeili, A. (2010). Effect of garlic (Allium sativum) extract on levels of urea and uric acid in normal and streptozotocin-diabetic rats. Iranian Journal of Pharmaceutical Research, 3(2); 52-59.
9.Feng, R., Wang, L., Li, Z., Yang, R., Liang, Y., Sun, Y. (2019). A systematic comparison of exercise training protocols on animal models of cardiovascular capacity. Life sciences, 217; 128–140.
10.Ghyasi, R., Mohaddes, G., Naderi, R. (2019). Combination effect of voluntary exercise and garlic (Allium sativum) on oxidative stress, cholesterol level and histopathology of heart tissue in type 1 diabetic rats. J Cardiovasc Thorac Res, 11(1); 61-67.
11.Heckbert, S. R., Post, W., Pearson, G. D., Arnett, D. K., Gomes, A. S., Jerosch-Herold, M. (2006). Traditional cardiovascular risk factors in relation to left ventricular mass, volume, and systolic function by cardiac magnetic resonance imaging: the Multiethnic Study of Atherosclerosis. Journal of the American College of Cardiology, 48(11); 2285–2292.
12.Ito, K., Date, T., Kawai, M., Nojiri, A., Narui, R., Hioki, M. (2011). Morphological change of left atrium in obese individuals. International Journal of Cardiology, 152(1); 117–119.
13.Jacobs, E. J., Newton, C. C., Wang, Y., Patel, A. V., McCullough, M. L., Campbell, P. T. (2010). Waist circumference and all-cause mortality in a large US cohort. Archives of Internal Medicine, 170(15); 1293–1301
14.Kizer, J. R., Bella, J. N., Palmieri, V., Liu, J. E., Best, L. G., Lee, E. T. (2006). Left atrial diameter as an independent predictor of first clinical cardiovascular events in middle-aged and elderly adults: the Strong Heart Study (SHS). American Heart Journal, 151(2); 412–418.
15.Liu, Y., Sun, M., Yao, H., Liu, Y., Gao, R. (2017). Herbal medicine for the treatment of obesity: an overview of scientific evidence from 2007 to 2017. Evidence-based complementary and alternative medicine: eCAM, 8943059
16.Lopaschuk, GD., Folmes, CD., Stanley, WC. (2007). Cardiac energy metabolism in obesity. Circulation Research, 101(4); 335–347.
17.Madamanchi, NR., Runge, MS. (2013). Redox signaling in cardiovascular health and disease. Free Radic Biol Med., 61; 473–501.
18.Malekpour, Z., Doosti, M., Paknejad, M., Nourbakhsh, M., Yassa, N., Gerayesh-Nejad, S., Heshmat, R. (2011). The effect of alcoholic garlic (Allium sativum) extract on ABCA1 expression in human THP-1 macrophages. Tehran Uni Med J (TUMJ)., 69; 146-152.
19.Martins, F., Campos, D. H., Pagan, L. U., Martinez, P. F., Okoshi, K., Okoshi, M. P. (2015). High-fat diet promotes cardiac remodeling in an experimental model of obesity. Arquivos Brasileiros de Cardiologia, 105(5); 479–486
20.Mukthamba, P., Srinivasan, K. (2015). Hypolipidemic influence of dietary fenugreek (trigonella foenum-graecum) seeds and garlic (Allium sativum) in experimental myocardial infarction. Food & Function, 6(9); 3117–3125.
21.Nagarajarao, H. S., Penman, A. D., Taylor, H. A., Mosley, T. H., Butler, K., Skelton, T. N. (2008). The predictive value of left atrial size for incident ischemic stroke and all-cause mortality in African Americans: the Atherosclerosis Risk in Communities (ARIC) Study. Stroke, 39(10); 2701–2706.
22.Nystoriak, M. A., Bhatnagar, A. (2018). Cardiovascular effects and benefits of exercise. frontiers in cardiovascular. Medicine, 5; 135.
23.Okada, Y., Tanaka, K., Fujita, I., Sato, E., Okajima, H. (2005). Antioxidant activity of thiosulfinates derived from garlic. Redox Rep, 10(2); 96-102
24.Oliveira-Junior, S. A., Martinez, P. F., Guizoni, D. M., Campos, D. H., Fernandes, T., Oliveira, E. M. (2014). AT1 receptor blockade attenuates insulin resistance and myocardial remodeling in rats with diet-induced obesity. PloS one, 9(1); e86447.
25.Omer, T. (2020). The causes of obesity: an in-depth review. Adv Obes Weight Manag Control, 10(3); 90-94.
26.Pluim, B. M., Zwinderman, A. H., van der Laarse, A., van der Wall, E. E. (2000). The athlete's heart. A meta-analysis of cardiac structure and function. Circulation, 101(3); 336–344.
27.Rider, O. J., Francis, J. M., Ali, M. K., Byrne, J., Clarke, K., Neubauer, S. (2009). Determinants of left ventricular mass in obesity; a cardiovascular magnetic resonance study. Journal of cardiovascular magnetic resonance : official journal of the Society for Cardiovascular Magnetic Resonance, 11(1); 9.
28.Rider, O. J., Lewis, A. J., Neubauer, S. (2014). Structural and metabolic effects of obesity on the myocardium and the aorta. Obesity Facts, 7(5); 329–338.
29.Salesi, M., Mehrtash, M., Daryanoosh, F, Tanide, N. (2018). The role of caloric restriction on lipid coat proteins gene expression and insulin resistance after 8 weeks high caloric diet in male rats. J Arak Uni Med Sci., 21(5); 21-31.
30.Schwartz, M. W., Seeley, R. J., Zeltser, L. M., Drewnowski, A., Ravussin, E., Redman, L. M. (2017). Obesity pathogenesis: an endocrine society scientific statement. Endocrine Reviews, 38(4), 267–296
31.Sharma, N., Okere, I. C., Duda, M. K., Chess, D. J., O'Shea, K. M., Stanley, W. C. (2007). Potential impact of carbohydrate and fat intake on pathological left ventricular hypertrophy. Cardiovascular Research, 73(2); 257–268.
32.Sharma, S., Elliott, P. M., Whyte, G., Mahon, N., Virdee, M. S., Mist, B., McKenna, W. J. (2000). Utility of metabolic exercise testing in distinguishing hypertrophic cardiomyopathy from physiologic left ventricular hypertrophy in athletes. Journal of the American College of Cardiology, 36(3); 864–870.
33.Silva, D. C., Lima-Leopoldo, A. P., Leopoldo, A. S., Campos, D. H., Nascimento, A. F., Oliveira Junior, S. A. (2014). Influence of term of exposure to high-fat diet-induced obesity on myocardial collagen type I and III. Arquivos Brasileiros de Cardiologia, 102(2); 157–163.
34.Sobenin, I. A., Myasoedova, V. A., Iltchuk, M. I., Zhang, D. W., Orekhov, A. N. (2019). Therapeutic effects of garlic in cardio vascular atherosclerotic disease. Chinese Journal of Natural Medicines, 17(10); 721–728.
35.Son, J. W., Sung, J. K., Lee, J. W., Youn, Y. J., Ahn, M. S., Ahn, S. G. (2016). Abdominal obesity and structure and function of the heart in healthy male Koreans: The ARIRANG study. Medicine, 95(39); e4930.
36.Stritzke, J., Markus, M. R., Duderstadt, S., Lieb, W., Luchner, A., Döring, A. (2009). The aging process of the heart: obesity is the main risk factor for left atrial enlargement during aging the MONICA/KORA(monitoring of trends and determinations in cardiovascular disease/cooperative research in the region of Augsburg) study. Journal of the American College of Cardiology, 54(21); 1982–1989.
37.Tian, D., Meng, J. (2019). Exercise for prevention and relief of cardiovascular disease: prognoses, mechanisms, and approaches. Oxidative Medicine and Cellular Longevity, 3756750.
38.Tofas, T., Draganidis, D., Deli, C. K., Georgakouli, K., Fatouros, I. G., Jamurtas, A. Z. (2019). Exercise-induced regulation of redox status in cardiovascular diseases: the role of exercise training and detraining. Antioxidants Basel, Switzerland, 9(1); 13.
39.Winzer, E. B., Woitek, F., Linke, A. (2018). Physical activity in the prevention and treatment of coronary artery disease. Journal of the American Heart Association, 7(4); e007725.
40.Wlosinska, M., Nilsson, A. C., Hlebowicz, J., Hauggaard, A., Kjellin, M., Fakhro, M. (2020). The effect of aged garlic extract on the atherosclerotic process - a randomized double-blind placebo-controlled trial. BMC Complementary Medicine and Therapies, 20(1); 132.
41.Yang, C., Li, L., Yang, L., Lǚ, H., Wang, S., Sun, G. (2018). Anti-obesity and hypolipidemic effects of garlic oil and onion oil in rats fed a high-fat diet. Nutrition & Metabolism, 15; 43.
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