Description
The Mitochondrial-Derived “Exercise Mimetic”
Ignite Labs MOTS-c (Mitochondrial Open Reading Frame of the 12S rRNA-c) is a unique, naturally occurring peptide encoded within the mitochondrial genome rather than the cell’s nucleus. Often referred to as a “mitochondrial hormone,” MOTS-c is at the forefront of metabolic research due to its ability to signal the body to mimic the beneficial effects of physical exercise and regulate systemic energy balance.
Primary Research Applications
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Exercise Mimicry: Investigating how MOTS-c activates the AMPK (Adenosine Monophosphate-activated Protein Kinase) pathway, simulating the metabolic state of aerobic exercise.
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Insulin Sensitivity: Studying the peptide’s role in improving glucose uptake in skeletal muscle and its potential to reverse insulin resistance in metabolic models.
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Fatty Acid Metabolism: Examining the promotion of lipid oxidation and the inhibition of fat accumulation, particularly in the liver and adipose tissue.
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Mitochondrial Biogenesis: Analyzing the signaling pathways that increase the density and efficiency of mitochondria within the cell.
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Physical Performance & Longevity: Exploring the correlation between MOTS-c levels and increased stamina, physical capacity, and the slowing of age-related metabolic decline.
Product Specifications
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Concentration: 10mg Lyophilized Powder
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Purity Grade: 99%
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Molecular Profile: 16-amino acid peptide derived from the mitochondrial 12S rRNA.
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Quality Guarantee: Manufactured to rigorous standards to ensure the preservation of the delicate mitochondrial signaling sequence.
Why MOTS-c from Ignite Labs?
MOTS-c represents a significant shift in how we understand the dialogue between mitochondria and the rest of the body. Ignite Labs provides this specialized peptide in a high-purity, stable format, allowing researchers to explore the cutting edge of “exercise in a vial” and mitochondrial medicine with complete confidence in their data.
Disclaimer: This product is intended for laboratory research use only. It is not approved for human consumption, medical, or diagnostic use.







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