Oxidative Stress

Therapeutic role of fucoidans against oxidative stress: recent developments, translational challenges, and future directions.

Archives of toxicology

Abstract

It is increasingly recognized that redox injury, one of the most extensively studied processes in disease pathophysiology, pharmacology, and toxicology, is rarely explained by an indiscriminate excess of free radicals alone, but rather by a combination of macromolecular injury, maladaptive redox signaling, ferroptosis, and dysregulated inflammation and metabolism. This paradigm shift has revealed several limitations of traditional antioxidants, including a focus on scavenging effects, poor target engagement, unfavorable or uncertain pharmacokinetics, failure to reach specific subcellular compartments, and lack of robust biomarkers of response. Concomitantly, greater attention is currently being paid to natural compounds combining antioxidant, anti-inflammatory, and metabolic effects. Fucoidans, structurally diverse, fucose-rich, sulfated polysaccharides derived mainly from brown seaweeds, are emerging as promising candidates because they target multiple pathways relevant to oxidative injury, including activation of antioxidant systems, preservation of mitochondrial function, attenuation of ferroptosis, and modulation of gut-organ axes that amplify oxidative tissue damage. This review critically appraises studies conducted over the last ten years, with particular emphasis on newly identified mechanisms, quality of fucoidan characterization, disease-model relevance, and translational potential. Current evidence supports an antioxidant effect of fucoidans, particularly in diseases affecting the liver, kidneys, intestines, central nervous system, and skin/wound healing. However, translation is constrained by heterogeneity across source species, extraction, purification, molecular weight, and analytical reporting. Standardized chemistry, robust pharmacokinetic characterization, and comprehensive assessments of biomarkers of response and organ biology are required to validate the role of fucoidans in mitigating oxidative stress.

Key Findings

  • Fucoidans exhibit antioxidant effects by activating antioxidant systems and preserving mitochondrial function.
  • They attenuate ferroptosis and modulate gut-organ axes that contribute to oxidative tissue damage.
  • Current evidence supports their therapeutic potential in diseases affecting the liver, kidneys, intestines, central nervous system, and skin/wound healing.
  • Translation to clinical use is limited by heterogeneity in fucoidan sources, extraction methods, molecular weight, and lack of standardized pharmacokinetic and biomarker assessments.

Clinical Significance

Fucoidans represent promising natural compounds for mitigating oxidative stress-related tissue damage across multiple organs, but standardized characterization and validation are needed to advance their clinical application.

Citation

Mangoni Arduino A, Wimmer Barbara C, Kidgell Joel Tet al.. Therapeutic role of fucoidans against oxidative stress: recent developments, translational challenges, and future directions. Archives of toxicology. 2026-Oct-02.

DOI: 10.1007/s00204-026-04572-z