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Reversal of age-associated oxidative stress in mice by PFT, a novel kefir product
Author(s) -
Mamdooh Ghoneum,
Shaymaa A. Abdulmalek,
Deyu Pan
Publication year - 2020
Publication title -
international journal of immunopathology and pharmacology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.724
H-Index - 53
eISSN - 2058-7384
pISSN - 0394-6320
DOI - 10.1177/2058738420950149
Subject(s) - oxidative stress , glutathione peroxidase , superoxide dismutase , medicine , endocrinology , malondialdehyde , chemistry , antioxidant , glutathione , lipid peroxidation , biochemistry , enzyme
Oxidative stress is a key contributor to aging and age-related diseases. In the present study, we examine the protective effects of PFT, a novel kefir product, against age-associated oxidative stress using aged (10-month-old) mice. Methods: Mice were treated with PFT orally at a daily dose of 2 mg/kg body weight over 6 weeks, and antioxidant status, protein oxidation, and lipid peroxidation were studied in the brain, liver, and blood. Results: PFT supplementation significantly reduced the oxidative stress biomarkers malondialdehyde (MDA) and nitric oxide; reversed the reductions in glutathione (GSH) levels, total antioxidant capacity (TAC), and anti-hydroxyl radical (AHR) content; enhanced the antioxidant enzyme activities of glutathione peroxidase (GPx), catalase (CAT), and superoxide dismutase (SOD); inhibited the liver enzyme levels of aspartate aminotransferase (AST) and alanine aminotransferase (ALT); significantly reduced triglyceride (TG), total cholesterol (TC), and low density lipoprotein (LDL) levels; and significantly elevated high density lipoprotein (HDL) levels. Interestingly, PFT supplementation reversed the oxidative changes associated with aging, thus bringing levels to within the limits of the young control mice in the brain, liver, and blood. We also note that PFT affects the redox homeostasis of young mice and that it is corrected post-treatment with PFT. Conclusion: Our findings show the effectiveness of dietary PFT supplementation in modulating age-associated oxidative stress in mice and motivate further studies of PFT’s effects in reducing age-associated disorders where free radicals and oxidative stress are the major cause.

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