A focused mitochondrial-output trio combining mitochondrial-derived peptide signaling, central coenzyme fuel, and methylation support for endurance and metabolic efficiency.
Three compounds, each directly supporting the mitochondria — the energy-producing organelles inside every cell. Built for performance, endurance, and metabolic efficiency, not general vitality.
Encoded inside the mitochondrial genome itself — the cell's energy organelles signaling to the rest of the body. Signals muscle to increase glucose uptake, improves insulin sensitivity, ramps up mitochondrial biogenesis, and activates AMPK — a master metabolic switch that improves fuel efficiency and metabolic flexibility.
Powers the electron transport chain inside mitochondria. Without enough NAD+, mitochondria can't complete the reactions that convert food into ATP. Also activates sirtuins — longevity proteins regulating mitochondrial function, DNA repair, and cellular cleanup.
Essential for methylation reactions regulating energy metabolism, neurotransmitter synthesis, and red blood cell production. Red blood cells carry the oxygen that mitochondria use as the final electron acceptor in energy production. Without adequate B-12, endurance suffers.
A mitochondrial-derived peptide studied for metabolic efficiency, endurance, and insulin sensitivity.
MOTS-C is encoded in mitochondrial DNA and signals across the body to improve glucose use, fatty acid oxidation, and exercise performance.
A visualization of the biological systems engaged during the active pharmacokinetic window of this stack.
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This Stack Library is published for educational and scientific reference. Content describes how each compound interacts with biological systems. Always consult a qualified healthcare professional before considering any peptide protocol.