Modulating Ferroptosis in Aging: The Therapeutic Potential of Natural Products
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Wiley Journal of Aging Research
Abstract
Aging is a multifactorial process driven by accumulating cellular damage. Ferroptosis—an iron-dependent, lipid peroxidation mediated form of cell death—has emerged as a critical contributor to age-related tissue degeneration. Tis review synthesizes
current evidence linking ferroptosis to key aging hallmarks, including oxidative stress, chronic infammation, mitochondrial
dysfunction, and dysregulated iron metabolism. Central to these interactions is the age-associated decline in antioxidant defenses
(e.g., glutathione, glutathione peroxidase 4 [GPx4]) and paradoxical iron dynamics, where systemic defciency coexists with
intracellular overload, promoting reactive oxygen species (ROS) generation via the Fenton reaction. Natural products such as
resveratrol, curcumin, and epigallocatechin gallate (EGCG) exhibit promising anti-ferroptotic efects through mechanisms
including iron chelation, ROS scavenging, and upregulation of endogenous antioxidants. Preclinical and clinical studies indicate
their potential in reducing lipid peroxidation and enhancing cellular resilience in aging contexts. However, challenges such as
poor bioavailability and tissue-specifc iron dysregulation remain. Tis review explores how combinatorial approaches—targeting
multiple ferroptosis pathways—may ofer synergistic therapeutic benefts. Collectively, ferroptosis inhibition emerges as
a promising strategy to mitigate age-associated tissue damage and promote healthy aging.
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Research Article