The Protective Effects of the Combination of Vitamin E and Swimming Exercise on Memory Impairment Induced by Exposure to Waterpipe Smoke

Author:

Alzoubi Karem H.12,Halboup Abdulsalam M.23,Khabour Omar F.4,Alomari ⁠ Mahmoud A.5

Affiliation:

1. Department of Pharmacy Practice and Pharmacotherapeutics, University of Sharjah, Sharjah, UAE

2. Department of Clinical Pharmacy, Faculty of Pharmacy, Jordan University of Science and Technology, Irbid, Jordan

3. Department of Clinical Pharmacy and Pharmacy Practice, Faculty of Pharmacy, University of Science and Technology, Sana\'a, Yemen

4. Department of Medical Laboratory Sciences, Jordan University of Science and Technology, Jordan

5. Department of Rehabilitation Sciences, Division of Physical Therapy, Jordan University of Science and Technology, Irbid, Jordan

Abstract

Background: Waterpipe smoking (WP) exposure involves a negative health impact, including memory deficit, which is attributed to the elevation of oxidative stress. Vitamin E (VitE) in combination with swimming exercise exerts protective effects that prevent memory impairment. In the current study, the modulation of WP-induced memory impairment by the combined effect of VitE and swimming exercise (SE) was investigated. Method: Animals were exposed to WP one hour/day, five days per week for four weeks. Simultaneously, VitE (100 mg/kg, six days/week for four weeks) was administered via oral gavage, and the rats were made to swim one hour/day, five days/week for four weeks. Changes in memory were evaluated using radial arm water maze (RAWM), and oxidative stress biomarkers were examined in the hippocampus. Results: WP exposure induced short-term/long-term memory impairment (p<0.05). This impairment was prevented by a combination of VitE with SE (p<0.05). Additionally, this combination normalized the hippocampal catalase, GPx, and GSH/GSSG ratios that were modulated by WP (p<0.05). The combination further reduced TBARs levels below those of the control group (p<0.05). Conclusion: WP-induced memory impairments were prevented by the combination of VitE with SE. This could be attributed to preserving the hippocampal oxidative mechanism by combining VitE and SE during WP exposure.

Funder

Deanship of Research at Jordan University of Science and Technology

Publisher

Bentham Science Publishers Ltd.

Subject

Pharmacology,General Neuroscience

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