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Vitamin C, ACSL4, and Ferro-Aging: Mechanistic Insights and Translational Perspectives from Primate Studies
Chenxi Li1,2,3, Zhongcheng Gong4, Jishi Ye5
1Cancer Research Institute, The Third Teaching Hospital, The Affiliated Cancer Hospital of Xinjiang Medical University, Xinjiang Key Laboratory of Translational Biomedical Engineering, Urumqi, China.
Abstract:
The concept of ferro-aging has been proposed as an evolutionarily conserved, iron-driven aging trajectory orchestrated by acyl-coenzyme A (CoA) synthetase long-chain family member 4 (ACSL4), which links lipid peroxidation, cellular senescence, and systemic organ decline in primates. Emerging evidence from non-human primate studies suggests that vitamin C (VC), traditionally viewed as a broad-spectrum antioxidant, has been proposed to interact with and inhibit ACSL4 activity at supraphysiological concentrations, potentially reversing multi-omic markers of biological age and preserving neural architecture, functional connectivity, and metabolic homeostasis in aged individuals. However, the precise molecular mechanism of VC-mediated ACSL4 inhibition remains unconfirmed, and the geroprotective efficacy of VC in humans is yet to be validated. This Perspectives critically critically discusses the mechanistic underpinnings of the VC-ACSL4-ferro-aging axis, examines key limitations of current evidence, and highlights the translational potential and unresolved challenges of targeting ferro-aging for promoting healthy aging.
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