Pausinystalia macroceras polysaccharides
1 paper5 findings
Pausinystalia macroceras polysaccharides extend lifespan in flies and worms; the same model-organism study reports reduced polyglutamine aggregation and activation of FOXO signalling and the NRF2–KEAP1 antioxidant response. All five findings come from one lab, with none pointing the other way; there are no cell, mouse or human results.
- 1 lab in 1 country
- Model organisms1
Outcomes
4Lifespan
upin flies1upin worms1
1 study
Lifespan
upin flies1upin worms1
Pausinystalia macroceras polysaccharides extend lifespan in flies.
Model organisms
Biogerontology19 Sep 2026
Pausinystalia macroceras polysaccharides extend lifespan in worms.
Model organisms
Biogerontology19 Sep 2026
NRF2–KEAP1 antioxidant response
upin model organisms1
1 study
NRF2–KEAP1 antioxidant response
upin model organisms1
Pausinystalia macroceras polysaccharides activate NRF2–KEAP1 antioxidant response.
Model organisms
Biogerontology19 Sep 2026
FOXO signalling
upin model organisms1
1 study
FOXO signalling
upin model organisms1
Pausinystalia macroceras polysaccharides activate FOXO signalling.
Model organisms
Biogerontology19 Sep 2026
Polyglutamine aggregation
downin model organisms1
1 study
Polyglutamine aggregation
downin model organisms1
Pausinystalia macroceras polysaccharides decrease polyglutamine aggregation.
Model organisms
Biogerontology19 Sep 2026