Study

SIRT6 activator fucoidan extends healthspan and lifespan in aged wild-type mice

Suh Y., Yang J., Wang X., Han H., Zhu Y., Zhang L., Chen H., Robbins P. et al.

PRECLINICAL (AGED WILD-TYPE MOUSE STUDY) 2025

An unreviewed preprint reports that fucoidan, a brown-seaweed polysaccharide, extended median lifespan in aged male mice, reduced frailty in both sexes, and lowered epigenetic age, acting through SIRT6.

Summary Can a seaweed compound help older mice live longer and stay healthier? Show / hide ↓

Researchers gave fucoidan, a compound from brown seaweed, to aged male and female mice. These were ordinary mice without a special disease-causing genetic change. Treated male mice had a longer median lifespan, meaning the age when half the mice had died. Both sexes showed less frailty, meaning fewer signs of weakness, and had lower epigenetic age, a DNA-based estimate of biological aging. Lab tests suggested fucoidan increased SIRT6, a protein involved in cell maintenance, and reduced LINE1, repeated DNA sequences linked with aging-related damage. This was an unreviewed preprint, and no humans took part.

What this means for you: This does not show that fucoidan extends human life. Do not buy a supplement based on this study, especially because the finding has not been independently confirmed and the mouse dose may be much higher than typical commercial doses.

early evidence
DesignPRECLINICAL (AGED WILD-TYPE MOUSE STUDY)
TierTier 2, Product RCT (not peer-reviewed)
Year2025
JournalbioRxiv preprint (not yet peer-reviewed at time of writing)
Nn/a
PublishedMar 24, 2025
Added to NO1GEVITYJul 14, 2026

This is a preprint, not yet through peer review as of the source date. The team, led by Yousin Suh with collaborators including Paul Robbins, administered fucoidan to aged wild-type mice. The reported results: a significant increase in median lifespan in male mice, a marked reduction in frailty in both male and female mice, and a reduction in epigenetic age. The paper also reports that fucoidan activates SIRT6's mono-ADP-ribosylase (mADPr) activity in addition to its previously known deacetylase activity, and that fucoidan-treated mice show repression of LINE1 retrotransposon elements, a marker tied to genomic instability in aging. The authors note fucoidan-rich brown seaweed is a dietary staple in South Korea and Japan, countries with high life expectancy, and propose this as circumstantial support for fucoidan as a safe SIRT6-activation strategy. Independent review coordinated by Life Science Editors Foundation flagged this as a notable finding but it has not been replicated and has not passed formal peer review. This is animal, not human, data, and the human-equivalent dose implied by the mouse dosing has been estimated elsewhere as substantially higher than commercial supplement doses currently sold.

As brown seaweed rich in fucoidan is a popular food item in South Korea and Japan, countries with the highest life expectancy, we propose that fucoidan supplementation should be explored as a safe strategy for activating SIRT6 and improving human healthspan and lifespan.
Critic notes

Unreviewed preprint as of the source date; results have not been independently replicated. Mouse lifespan extension does not guarantee equivalent human effect. Population-level dietary correlation with Japanese and Korean life expectancy is not evidence of causation and ignores confounding factors in those populations' diets and healthcare systems.

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