
$125.00
MOTS-C (Mitochondrial-derived peptide Open reading frame within 12S rRNA type-C) is a 16-amino-acid peptide encoded by the mitochondrial genome — one of a small number of biologically active peptides derived from the mitochondrial 12S ribosomal RNA gene. Discovered in 2015 by researchers at USC, MOTS-C has attracted significant attention for its roles in metabolic regulation, insulin sensitivity, exercise performance, and longevity signalling. X-Fuel MOTS-C is supplied at 20mg per vial, ultra-purity research grade. For the metabolic optimisation crowd and serious athletes focused on glucose utilisation and body composition, MOTS-C represents one of the most exciting peptides of the 2020s.
MOTS-C 20mg — Ultra-Purity Research Grade
What Is MOTS-C?
MOTS-C (Mitochondrial ORF of the 12S rRNA Type-C) is a 16-amino-acid peptide (MRWQEMGYIFYPRKLR) encoded not in the nuclear genome — as most peptides are — but in the mitochondrial genome itself. It was identified in 2015 by Changhan David Lee and colleagues at the USC Leonard Davis School of Gerontology. This unusual origin makes MOTS-C part of a new class of molecules called mitochondrial-derived peptides (MDPs), which also includes humanin and SHLP peptides.
Its mitochondrial origin means MOTS-C acts as a direct communication signal between the mitochondria and the rest of the cell — and potentially between cells and tissues — making it a fundamentally novel type of metabolic regulator.
X-Fuel MOTS-C is supplied at 20mg per vial, lyophilised to ultra-purity research grade.
Why the Community Uses It
MOTS-C has attracted a dedicated following among metabolic optimisers, competitive athletes, and longevity researchers for several interconnected reasons:
Insulin Sensitivity & Glucose Metabolism
In the original 2015 research and subsequent studies, MOTS-C demonstrated significant improvements in insulin sensitivity in rodent models — including reversal of diet-induced insulin resistance. It activates AMPK (AMP-activated protein kinase), a master metabolic regulator, and promotes glucose uptake in skeletal muscle through GLUT4 translocation. This profile is highly relevant to competitive athletes managing carbohydrate intake and body composition.
Exercise Performance
A landmark 2021 study demonstrated that MOTS-C administration in aged mice restored their physical performance to levels comparable with young mice — and even enhanced performance in young mice beyond baseline. The mechanisms involve mitochondrial biogenesis and improved muscular glucose utilisation.
Longevity & Anti-Ageing
MOTS-C levels decline with age, and restoration has been associated in animal models with extended healthspan. Its interaction with the AMPK pathway — also targeted by metformin — places it in the same conceptual category as established longevity interventions.
Fat Oxidation & Body Composition
MOTS-C appears to promote fatty acid oxidation and reduce adiposity in animal models, making it relevant to body composition goals alongside its glucose metabolism effects.
Mechanism of Action
MOTS-C translocates to the nucleus under metabolic stress, where it regulates nuclear gene expression — a remarkable behaviour for a mitochondrially-encoded peptide. It activates AMPK signalling, modulates the folate cycle and methionine metabolism, and influences antioxidant defence via the Nrf2 pathway.
Reconstitution & Storage
Supplied lyophilised. Reconstitute with bacteriostatic water. Store unreconstituted refrigerated at 2–8°C. Reconstituted solution: refrigerate and use within 28 days.
Storage Information
Store lyophilised at 2–8°C, protected from light. Reconstituted: refrigerate, use within 28 days. Avoid freeze-thaw cycles of reconstituted solution.
Usage & Reconstitution
Reconstitute with bacteriostatic water (1–2mL per vial). Subcutaneous injection is the researched administration route. Some protocols note administration around exercise timing to leverage synergistic AMPK activation.
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