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May 13, 2026Nutrients0 citationsOpen Access

Potential Role of Vitamin B6 as an Antioxidant via Pyridoxal-5′-Phosphate–Dependent Metabolic Pathways and Subsequent Activation of Nrf2 Signaling

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NKNorihisa KatôYYYongshou YangAKAbdelkrim Khedara

Key Points

  • This article explores the potential of vitamin B6 as an antioxidant in diseases linked to aging.
  • Discussed B6 supplementation and its impact on oxidative stress and inflammation.
  • Explored metabolic pathways activated by pyridoxal-5′-phosphate.
  • Examined antioxidant metabolites and Nrf2 signaling activation.
  • B6 supplementation is linked to improved antioxidant responses.
  • Elevated levels of metabolites such as carnosine and taurine noted.
  • Pyridoxal-5′-phosphate enhances pathways contributing to glutathione regeneration.

Abstract

Accumulating evidence suggests that vitamin B6 (B6) deficiency among older adults is associated with sarcopenia, frailty, heart disease, and brain diseases. Oxidative stress and inflammation play key roles in cardiac and skeletal muscle and neuronal pathology. However, the detailed roles of B6 supplementation in oxidative stress and inflammation are not fully understood. Recent studies have shown that supplemental B6 upregulated the nuclear factor erythroid 2-like 2 (Nrf2) signaling pathway with the coordinated activation of antioxidant responses. Accumulating evidence suggests the potential of targeted Nrf2 signaling regulation in the treatment of aging-related musculoskeletal, heart, and brain diseases. Notably, dietary supplementation of B6 elevates the levels of several antioxidant metabolites, such as carnosine, anserine, taurine, hydrogen sulfide (H2S), 5-methyltetrahydrofolate, kynurenic acid, 3-hydroxyanthranilic acid, and γ-aminobutyric acid (GABA) via the upregulation of pyridoxal 5′-phosphate (PLP)-dependent metabolic pathways, thereby linking to Nrf2 signaling activation. Furthermore, supplemental B6 stimulates glycogen breakdown through the PLP enzyme, glycogen phosphorylase, which in turn enhances the pentose phosphate pathway, thereby increasing nicotinamide adenine dinucleotide phosphate (NADPH) availability to regenerate glutathione (GSH). In this perspective article, we propose the potential role of B6 as an antioxidant mediated by the PLP-dependent multi-metabolic productions of antioxidant metabolites.

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Cite This Study

Katô et al. (2026) studied this question.

synapsesocial.com/papers/6a03cc3d1c527af8f1ed032fhttps://doi.org/10.3390/nu18101499
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Nicotinamide and Pyridoxine in Muscle Aging: Nutritional Regulation of Redox, Inflammation, and Regeneration2025
  2. 2Vitamin B6 Modifies Tau-Induced Cellular Stress- and Proteostasis-Related Responses2026
  3. 3Inhibition of Advanced Glycation End-products by the vitamin B6 vitamer pyridoxamine prevents systemic and skeletal muscle diet-induced metaflammation through modulation of S1P/RhoA/ROCK signalling.2025
  4. 4Revisiting vitamin <scp>B6</scp> metabolism: The emerging role of pyridoxal reductase in the pyridoxal 5′‐phosphate salvage pathway2026
  5. 5Vitamin B6 Prevents IL-1β Protein Production by Inhibiting NLRP3 Inflammasome Activation2016