What it’s about
The Anti-Aging Stack combines three mechanistically distinct compounds from modern aging research. In preclinical models, these pathways are frequently investigated in parallel because they address different hallmarks of aging: telomere preservation, mitochondrial function and oxidative stress.
The community typically combines these compounds in setups designed to cover multiple aging axes simultaneously. Each individual compound has substantial data; the combination reflects an established configuration in longevity research.
The Compounds
Epitalon is a synthetic tetrapeptide from the Khavinson bioregulator school. In preclinical studies, the compound is associated with effects on telomerase activity, pineal gland function and circadian regulation. An established compound of Russian aging research.
NAD+ is a central cofactor precursor in cellular redox reactions and substrate of the sirtuin family. In research models, direct provision is associated with increased sirtuin activity, mitochondrial biogenesis and reduced oxidative stress.
SS-31 is a synthetic tetrapeptide that binds selectively to cardiolipin in the inner mitochondrial membrane. In preclinical studies, the compound is associated with stabilization of membrane architecture and preserved respiratory capacity.
Research Context
In preclinical aging models, these three pathways are frequently investigated complementarily. Epitalon addresses the telomere axis and chronobiological regulation, NAD+ the sirtuin-and-redox axis, SS-31 the mitochondrial membrane integrity. The stack thus enables three-axis study designs for comprehensive longevity research.
This information is for research and educational purposes only. No medical recommendations.


