Logo-jcvtr

J Cardiovasc Thorac Res. 2015;7(4): 149-153. doi: 10.15171/jcvtr.2015.32
PMID: 26702343        PMCID: PMC4685280

Original Article

Influence of Two Various Durations of Resistance Exercise on Oxidative Stress in the Male Rat’s Hearts

Rafigheh Ghiasi 1, Mustafa Mohammadi 1 * , Javad Ashrafi Helan 2, Seied Razi Jafari Jozani 2, Shima Mohammadi 3, Akbar Ghiasi 4, Roya Naderi 5

Cited by CrossRef: 12


1- Tofas T, Draganidis D, Deli C, Georgakouli K, Fatouros I, Jamurtas A. Exercise-Induced Regulation of Redox Status in Cardiovascular Diseases: The Role of Exercise Training and Detraining. Antioxidants. 2019;9(1):13 [Crossref]
2- Naderi R, Pourheydar B, Ghiasi R, Shafiei F. Modulatory effect of tropisetron in the liver of streptozotocin-induced diabetes in rats: biochemical and histological evidence. 2020;41(3) [Crossref]
3- Castoldi R, Ozaki G, Garcia T, Giometti I, Koike T, Camargo R, dos Santos Pereira J, Constantino C, Louzada M, Camargo Filho J, Belangero W. Effects of muscular strength training and growth hormone (GH) supplementation on femoral bone tissue: analysis by Raman spectroscopy, dual-energy X-ray absorptiometry, and mechanical resistance. Lasers Med Sci. 2020;35(2):345 [Crossref]
4- Castoldi R, de Ângelo J, Pereira T, Dias R, Negrão F. Relationship between physical exercise and COVID-19 (SARS-CoV-2): systematic review. Sport Sci Health. 2023;19(1):55 [Crossref]
5- Ni C, Ji Y, Hu K, Xing K, Xu Y, Gao Y. Effect of exercise and antioxidant supplementation on cellular lipid peroxidation in elderly individuals: Systematic review and network meta-analysis. Front Physiol. 2023;14 [Crossref]
6- Castoldi R, Giometti I, Ozaki G, Garcia T, Ueno M, Fernandes F, Dornelles R, Louzada M, Filho J, Belangero W. Strength training and growth hormone: effects on bone of Wistar rats. Sport Sci Health. 2022;18(1):137 [Crossref]
7- Silva C, Bessa A, Costa J, Lopes P, Neves Â, Teles Bombardelli M, Colugnati D, Pedrino G, Mendes E, Santos R, Biancardi M, Santos F, Castro C. Mas receptor blockade impairs exercise-induced cardiac hypertrophy. Peptides. 2024;181:171296 [Crossref]
8- Ghiasi R, Naderi R, Sheervalilou R, Alipour M. Swimming training by affecting the pancreatic Sirtuin1 (SIRT1) and oxidative stress, improves insulin sensitivity in diabetic male rats. 2019;40(3) [Crossref]
9- Ali-Aghdam A, Karimi-Sales E, Mahmoudi J, Ghiasi R, Alipour M. Immunomodulator Drug (IMODTM) and Exercise Improve Cardiac Oxidative Stress and Antioxidant Balance in Diabetic Rats. Jundishapur J Nat Pharm Prod. 2020;15(3) [Crossref]
10- Supruniuk E, Maciejczyk M, Zalewska A, Górski J, Chabowski A. Blood Profile of Cytokines, Chemokines, Growth Factors, and Redox Biomarkers in Response to Different Protocols of Treadmill Running in Rats. IJMS. 2020;21(21):8071 [Crossref]
11- Bo B, Li S, Zhou K, Wei J. The Regulatory Role of Oxygen Metabolism in Exercise-Induced Cardiomyocyte Regeneration. Front Cell Dev Biol. 2021;9 [Crossref]
12- Hooshmand-Moghadam B, Eskandari M, Golestani F, Rezae S, Mahmoudi N, Gaeini A. The effect of 12-week resistance exercise training on serum levels of cellular aging process parameters in elderly men. Experimental Gerontology. 2020;141:111090 [Crossref]
13- Bo B, Zhou Y, Zheng Q, Wang G, Zhou K, Wei J. The Molecular Mechanisms Associated with Aerobic Exercise-Induced Cardiac Regeneration. Biomolecules. 2020;11(1):19 [Crossref]