Author:
Szilágyi Anna,Takács Barbara,Szekeres Réka,Tarjányi Vera,Nagy Dávid,Priksz Dániel,Bombicz Mariann,Kiss Rita,Szabó Adrienn Mónika,Lehoczki Andrea,Gesztelyi Rudolf,Juhász Béla,Szilvássy Zoltán,Varga Balázs
Abstract
AbstractAging is accompanied by an increased prevalence of degenerative conditions, including those affecting ocular health, which significantly impact quality of life and increase the burden on healthcare systems. Among these, retinal aging is of particular concern due to its direct link to vision impairment, a leading cause of disability in the elderly. Vision loss in the aging population is associated with heightened risks of cognitive decline, social isolation, and morbidity. This study addresses the critical gap in our understanding of modifiable lifestyle factors, such as physical exercise, that may mitigate retinal aging and its related pathologies. We investigated the effects of different exercise regimens—voluntary (recreational-type) and forced (high-intensity)—on the retinal health of aging Wistar rats (18-month-old), serving as a model for studying the translational potential of exercise interventions in humans. Male Wistar rats were divided into four groups: a young control (3-month-old) for baseline comparison, an aged sedentary control, an aged group engaging in voluntary exercise via a running wheel in their cage, and an aged group subjected to forced exercise on a treadmill for six sessions of 20 min each per week. After a 6-month experimental period, we assessed retinal function via electroretinography (ERG), measured retinal thickness histologically, and analyzed protein expression changes relevant to oxidative stress, inflammation, and anti-aging mechanisms. Our findings reveal that voluntary exercise positively impacts retinal function and morphology, reducing oxidative stress and inflammation markers while enhancing anti-aging protein expression. In contrast, forced exercise showed diminished benefits. These insights underscore the importance of exercise intensity and preference in preserving retinal health during aging. The study highlights the potential of recreational physical activity as a non-invasive strategy to counteract retinal aging, advocating for further research into exercise regimens as preventative therapies for age-related ocular degenerations.
Funder
Nemzeti Kutatási, Fejlesztési és Innovaciós Alap
Nemzeti Kutatási, Fejlesztési és Innovációs Alap
European University of Well-Being
University of Debrecen
Publisher
Springer Science and Business Media LLC
Reference128 articles.
1. United Nations. Department of Economic and Social Affairs: World Population Aging. 2019. https://www.un.org/en/development/desa/population/publications/pdf/ageing/WorldPopulationAgeing2019-Report.pdf. Accessed 04/10/2024.
2. Lipecz A, Miller L, Kovacs I, Czako C, Csipo T, Baffi J, et al. Microvascular contributions to age-related macular degeneration (AMD): from mechanisms of choriocapillaris aging to novel interventions. Geroscience. 2019;41(6):813–45.
3. Buonfiglio F, Korb CA, Stoffelns B, Pfeiffer N, Gericke A. Recent advances in our understanding of age-related macular degeneration: mitochondrial dysfunction, redox signaling, and the complement system. Aging Dis. 2024. https://doi.org/10.14336/AD.2024.0124.
4. Fleckenstein M, Schmitz-Valckenberg S, Chakravarthy U. Age-related macular degeneration: a review. JAMA. 2024;331(2):147–57.
5. Varadaraj V, Ehrlich JR, Swenor BK. Vision impairment has implications for aging and health outcomes, beyond ophthalmology. JAMA Netw Open. 2022;5(5):e2214610.
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