The effect of eight weeks of aerobic exercise with vitamin E supplementation on some neurotrophins in the hippocampal tissue of rats with Parkinson's disease

Document Type : Research Paper

Authors

1 PhD candidate, Sport Medicine Research Center, Najafabad Branch, Islamic Azad University, Najafabad, Iran

2 Assistant professor, Sport Medicine Research Center, Najafabad Branch, Islamic Azad University, Najafabad, Iran (Corresponding Author)

3 Assistant professor, Sport Medicine Research Center, Najafabad Branch, Islamic Azad University, Najafabad, Iran

Abstract

Introduction: Parkinson's disease (PD) is associated with disruption of neurotrophins. Previous studies have reported the favorable effect of exercise and some antioxidants. But their simultaneous effect is still not well known. Therefore, the aim of the present study was to investigate the effect of eight weeks of aerobic exercise with vitamin E supplementation on some neurotrophins in the hippocampal tissue of rats with Parkinson's disease.
Methods: In this experimental study, 40 Sprague-Dawley male rats (age 14-16 months and weight 250-270 grams) were given parkinsonism with 2 mg/kg reserpine (Rse) into groups (1) pd, ( 2) AT, (3) VE and (4) AT+VE were divided. In order to investigate the effects of Res on the variables, 8 rats were included in the healthy control group (HC). Aerobic training was done for eight weeks, five sessions a week and each session lasted 15-48 minutes at a speed of 10-24 meters per minute. VE was also taken orally at 30 mg/kg daily. To analyze the data, one-way analysis of variance and Tukey's post hoc test were used (P≥0.05).
Findings: BDNF and NGF gene expression values in VE, AT and VE+AT groups were significantly higher than PD group (P=0.001). Also, the increase of these two nortrophins in the AT+VE group was significantly higher than the VE and AT groups (P=0.001).
Conclusion: According to the results of this study, it seems that although aerobic exercise and vitamin E alone improve the expression of neurotrophins. However, these two interventions can strengthen each other's effects in the expression of neurotrophins in the conditions of Parkinson's disease modeling.

Keywords


  1. Pardridge WM. Treatment of Parkinson's disease with biologics that penetrate the blood-brain barrier via receptor-mediated transport. Frontiers in Aging Neuroscience. 2023;15:1276376.
  2. Dong-Chen X, Yong C, Yang X, Chen-Yu S, Li-Hua P. Signaling pathways in Parkinson’s disease: molecular mechanisms and therapeutic interventions. Signal transduction and targeted therapy. 2023;8(1):73.
  3. Singh R, Zahra W, Singh SS, Birla H, Rathore AS, Keshri PK, et al. Oleuropein confers neuroprotection against rotenone-induced model of Parkinson’s disease via BDNF/CREB/Akt pathway. Scientific Reports. 2023;13(1):2452.
  4. Salehi OR, Sheikholeslami-Vatani D, Hosseini SA. Psycho-physiological effects of high intensity interval training and vitamin E consumption in elderly trimethyltin-treated Alzheimer's rats. Metabolism and Exercise. 2021;11(2):57-76.
  5. Ghanbari P, Khajehzadeh S, Sayyed A, Raeisi D, Salehi O. The effect of high intensity interval training with beetroot (Beta vulgaris) juice supplementation on serotonin and dopamine receptors expression, anxiety and depression in middle-aged diabetic rats. Avicenna Journal of Phytomedicine. 2022;12(6):627.
  6. Hosseini SA, Salehi OR, Farzanegi P, Farkhaie F, Darvishpour AR, Roozegar S. Interactive effects of endurance training and royal jelly consumption on motor balance and pain threshold in animal model of the alzheimer disease. Archives of Neuroscience. 2020;7(2).
  7. Salehi OR, Hosseini SA, Farkhaie F, Farzanegi P, Zar A. The effect of moderate intensity endurance training with genistein on brain-derived neurotrophic factor and tumor necrosis factor-α in diabetic rats. Journal of nutrition, fasting and health. 2019;7(1):44-51.
  8. Marino G, Campanelli F, Natale G, De Carluccio M, Servillo F, Ferrari E, et al. Intensive exercise ameliorates motor and cognitive symptoms in experimental Parkinson’s disease restoring striatal synaptic plasticity. Science Advances. 2023;9(28):eadh1403.
  9. Rafie F, Rajizadeh MA, Shahbazi M, Pourranjbar M, Nekouei AH, Sheibani V, et al. Effects of voluntary, and forced exercises on neurotrophic factors and cognitive function in animal models of Parkinson's disease. Neuropeptides. 2023;101:102357.
  10. Ferrusola-Pastrana A, Davison G, Meadows SN. The therapeutic effects of multimodal exercise for people with Parkinson's: A longitudinal community-based study. Parkinsonism & Related Disorders. 2023;110:105366.
  11. da Cunha Germano BC, de Morais LCC, Idalina Neta F, Fernandes ACL, Pinheiro FI, do Rego ACM, et al. Vitamin E and its molecular effects in experimental models of neurodegenerative diseases. International Journal of Molecular Sciences. 2023;24(13):11191.
  12. Sahu MR, Rani L, Kharat AS, Mondal AC. Could Vitamins Have a Positive Impact on the Treatment of Parkinson’s Disease? Brain Sciences. 2023;13(2):272.
  13. Shahverdi M, Sourani Z, Sargolzaie M, Modarres Mousavi M, Shirian S. An Investigation into the Effects of Water-and Fat-Soluble Vitamins in Alzheimer's and Parkinson's Diseases. The Neuroscience Journal of Shefaye Khatam. 2023;11(3):95-109.
  14. Hajarian S, Banaeifar A, Soheili S, Arshadi S. The effect of eight weeks aerobic training with vitamin E supplementation on some markers of mitochondrial biogenesis in the brain tissue of rats with Parkinson's disease. Journal of Applied Exercise Physiology. 2023;18(36):15-27.
  15. Moradi S, Habibi A, Tabandeh MR, Shakerian S. Comparing the effect of 6 weeks of continuous and interval aerobic training on vascular endothelial growth factor and superoxide dismutase enzyme in hippocampus of male rats of Parkinson's model. SSU_Journals. 2019;27(3):1302-12.
  16. Hamid NAA, Hasrul MA, Ruzanna RJ, Ibrahim IA, Baruah PS, Mazlan M, et al. Effect of vitamin E (Tri E®) on antioxidant enzymes and DNA damage in rats following eight weeks exercise. Nutrition journal. 2011;10:1-7.
  17. Rotondo R, Proietti S, Perluigi M, Padua E, Stocchi F, Fini M, et al. Physical activity and neurotrophic factors as potential drivers of neuroplasticity in Parkinson’s Disease: A systematic review and meta-analysis. Ageing Research Reviews. 2023:102089.
  18. Li JA, Loevaas MB, Guan C, Goh L, Allen NE, Mak MK, et al. Does exercise attenuate disease progression in people with Parkinson’s disease? A systematic review with meta-analyses. Neurorehabilitation and Neural Repair. 2023;37(5):328-52.
  19. Shafiq MA, Singh J, Khan ZA, Neary JP, Bardutz HA. Effect of exercise on sleep quality in Parkinson’s disease: a mini review. BMC neurology. 2024;24(1):49.
  20. Cefis M, Chaney R, Wirtz J, Méloux A, Quirié A, Leger C, et al. Molecular mechanisms underlying physical exercise-induced brain BDNF overproduction. Frontiers in Molecular Neuroscience. 2023;16.
  21. hibata H, Katsuki H, Okawara M, Kume T, Akaike A. C‐Jun N‐terminal kinase inhibition and α‐tocopherol protect midbrain dopaminergic neurons from interferon‐γ/lipopolysaccharide‐induced injury without affecting nitric oxide production. Journal of neuroscience research. 2006;83(1):102-9.
  22. Godbout JP, Berg BM, Kelley KW, Johnson RW. α-Tocopherol reduces lipopolysaccharide-induced peroxide radical formation and interleukin-6 secretion in primary murine microglia and in brain. Journal of neuroimmunology. 2004;149(1-2):101-9.
  23. Malakoutikhah M, Satarian L, Kiani S, Javan M. Alpha-Tocopherol increases the proliferation of induced pluripotent stem cell derived neural progenitor cells. Physiology and Pharmacology. 2015;19(2):90-8.
  24. Nagib MM, Tadros MG, Rahmo RM, Sabri NA, Khalifa AE, Masoud SI. Ameliorative effects of α-tocopherol and/or coenzyme Q10 on phenytoin-induced cognitive impairment in rats: role of VEGF and BDNF-TrkB-CREB pathway. Neurotoxicity Research. 2019;35:451-62.
  25. Salimi H, Haghighi AH, Ababzadeh S, Marefati H, Abbasian S, Pond AL, et al. Aerobic training and vitamin E administration ameliorates cardiac apoptosis markers in rats exposed to methamphetamine. European Journal of Translational Myology. 2023;33(4).
  26. Hashemi SA, Ghadimi Z, Ghaedi H, Hashemi A. The effects of eight weeks of aerobic training with vitamin C on the expression pathway of antioxidants in the hippocampus tissue of TMT induced Alzheimer's disease rats. Brain Research. 2024;1822:148645.