SS-31 peptide
COA Available
Cellular Energy

SS-31

Mitochondrial-Targeted Peptide

SS-31 works at the cellular level to restore mitochondrial function, helping your cells generate energy more efficiently. By reducing oxidative damage and protecting vital organs, this peptide supports endurance, faster recovery, and long-term cellular health.

Restores mitochondrial function for enhanced cellular energy

Neutralizes free radicals and reduces oxidative damage

Improves exercise endurance and post-workout recovery

Protects brain, heart, and muscle tissue at the cellular level

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Research Disclaimer

This product is intended for laboratory research purposes only. Not for human consumption or clinical use. All purchases require consultation with a qualified healthcare provider. SS-31 has not been evaluated by the FDA. View COA

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What is SS-31?

SS-31 (also known as Elamipretide) is a mitochondria-targeted peptide that penetrates cell membranes to reach the inner mitochondrial membrane. Once there, it helps restore optimal electron transport chain function, which is essential for cellular energy production.

Unlike other peptides that affect hormone pathways, SS-31 works directly at the power source of the cell—the mitochondria. By stabilizing mitochondrial membrane potential and reducing excess reactive oxygen species (ROS), it helps cells function more efficiently and protects against age-related decline.

Research has shown promising results for cardiovascular health, neurological function, and exercise performance. Our SS-31 is manufactured under strict quality controls and supplied as a lyophilized powder with full Certificates of Analysis available for research purposes.

How SS-31 Works

Mitochondrial Restoration

Penetrates mitochondrial membranes to restore electron transport and ATP production.

Antioxidant Protection

Reduces oxidative stress by scavenging excess free radicals in mitochondria.

Organ Protection

Protective effects for heart, brain, and skeletal muscle tissue.

Performance Enhancement

Improves endurance capacity and accelerates post-exercise recovery.

Research Applications

  • Mitochondrial dysfunction studies
  • Cardiovascular health research
  • Neuroprotection studies
  • Exercise performance optimization
  • Anti-aging and longevity research