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Polyphenol-Rich Extracts from Annurca Apple Differentially Modulate Oxidative Stress-Induced Senescence in Human
Claudia Moriello1, Nicola Alessio1, Pasquale Perrone2
1Department of Experimental Medicine, Luigi Vanvitelli Campania University, 80138 Naples, Italy.
Abstract:
Cellular senescence of dermal fibroblasts is a central mechanism underlying skin aging and is closely linked to oxidative imbalance and mitochondrial dysfunction. In this study, we investigated the senotherapeutic effects of polyphenol-rich extracts obtained from peel and flesh of Malus pumila Mill. cv. Annurca at different ripening stages. Senescence was induced in human dermal fibroblasts by oxidative stress, and the biological activity of unripe and ripe apple extracts was comparatively evaluated. The effects of the treatments were assessed by analyzing cell viability, apoptotic response, oxidative stress levels, mitochondrial functionality, and established molecular and functional markers of cellular senescence. All extracts were well tolerated by young fibroblasts and selectively promoted apoptosis in senescent cells. However, marked differences in biological activity were observed depending on fruit tissue and ripening stage. Unripe peel extract consistently reduced senescence-associated markers, attenuated oxidative stress, and restored mitochondrial homeostasis, indicating a combined senomorphic and senolytic activity. In contrast, ripe peel extract displayed a predominantly senolytic profile associated with increased oxidative stress, while flesh-derived extracts exerted weaker or incomplete effects on senescence pathways. These results demonstrate that Annurca apple polyphenols modulate cellular senescence depending on fruit part and ripening stage. Peel extracts, particularly from unripe fruits, represent potent and sustainable natural senotherapeutics, highlighting the potential of agro-food by-products for anti-aging and skin rejuvenation applications.
Insights
Unripe Annurca apple peel extracts show potent senotherapeutic effects, reducing skin aging markers and restoring mitochondrial function. These findings highlight agro-food by-products as sustainable anti-aging solutions.
Area of Science:
- Dermatology
- Biochemistry
- Gerontology
Background:
- Cellular senescence in dermal fibroblasts drives skin aging, linked to oxidative stress and mitochondrial dysfunction.
- Polyphenols are bioactive compounds with potential anti-aging properties.
- Investigating natural sources for senotherapeutics is crucial for anti-aging applications.
Purpose of the Study:
- To evaluate the senotherapeutic effects of Malus pumila cv. Annurca apple extracts.
- To compare the activity of extracts from peel and flesh at different ripening stages.
- To identify potent natural compounds for skin rejuvenation.
Main Methods:
- Senescence was induced in human dermal fibroblasts using oxidative stress.
- Biological activity of unripe and ripe apple extracts was assessed.
- Cell viability, apoptosis, oxidative stress, mitochondrial function, and senescence markers were analyzed.
Main Results:
- All apple extracts were well-tolerated by young fibroblasts and induced apoptosis in senescent cells.
- Unripe peel extract demonstrated combined senomorphic and senolytic activity, reducing senescence markers and oxidative stress.
- Ripe peel extract showed predominantly senolytic effects with increased oxidative stress; flesh extracts had weaker effects.
Conclusions:
- Annurca apple polyphenols modulate cellular senescence based on fruit part and ripening stage.
- Unripe apple peel extracts are potent natural senotherapeutics for anti-aging.
- Agro-food by-products offer sustainable options for skin rejuvenation.
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