What Are the Purported Benefits of MOTs-C (20mg)?
MOTS-C (20 mg) is a mitochondria-derived peptide that has been extensively examined in laboratory research for its roles in metabolic regulation, cellular stress response, and energy balance. This formulation, supplied at a total strength of 20 mg, is of particular interest for studies exploring how mitochondrial signaling influences cellular adaptation to metabolic and environmental stressors under controlled experimental conditions.
Researchers are especially interested in MOTS-C for its value as a model mitochondrial peptide used to investigate mitochondrial–nuclear communication, metabolic signaling pathways, and cellular resilience mechanisms. Although findings to date are preliminary and investigational, with no clinical conclusions implied, MOTS-C provides a standardized research tool for examining longevity- and metabolism-associated pathways in vitro and in preclinical models.
MOTS-C (20 mg) is manufactured by Novera Compounds and classified under Peptides – Longevity & Anti-Aging Peptides. It is commonly referenced in the literature as a mitochondrial peptide or mitochondria-derived peptide.
What is the Chemical Makeup of MOTs-C (20mg)?
This product contains one synthetic peptide supplied within a single vial at a total strength of 20 mg, formulated for controlled laboratory research use.
- MOTS-C: 20 mg
- CAS: N/A
- Molecular Weight: 2174.64 g/mol
- Chemical Formula: C₁₀₁H₁₅₂N₂₈O₂₂S₂
MOTS-C is a 16–amino acid peptide that mirrors the sequence of a naturally occurring mitochondrial-encoded peptide, allowing researchers to examine mitochondrial signaling behavior under experimental conditions.
The peptide sequence for this product is:
Met–Arg–Trp–Gln–Glu–Met–Gly–Tyr–Ile–Phe–Tyr–Pro–Arg–Lys–Leu–Arg
This defined molecular structure allows researchers to investigate metabolic signaling, stress-response pathways, and mitochondrial–nuclear regulatory mechanisms in controlled laboratory models.
MOTS-C (20 mg) is supplied as a high-purity lyophilized powder, with identity and purity typically confirmed using high-performance liquid chromatography (HPLC) and mass spectrometry (MS). The standardized presentation supports reproducibility, batch consistency, and accurate measurement in research workflows.
What Does Scientific Research Say About MOTs-C (20mg)?
Scientific literature suggests that MOTS-c peptide may influence pathways related to glucose metabolism, insulin sensitivity, and cellular stress regulation in preclinical models. Ongoing research continues to explore its role in metabolic signaling and mitochondrial–nuclear communication.
Given its growing relevance, researchers frequently order MOTS-c peptide for in vitro and animal studies investigating metabolic adaptation. While this work is still evolving, MOTS-c remains an active area of interest in peptide and mitochondrial research.
What are the Storage Conditions for MOTs-C (20mg)?
Unreconstituted MOTS-c peptide should be stored at –20°C, protected from light and moisture to maintain structural integrity over time. Proper storage is essential to preserve peptide stability for research use.
After reconstitution, keep solutions refrigerated at 2–8°C and use them in accordance with laboratory protocols. Avoid repeated freeze–thaw cycles to prevent degradation and help ensure consistent performance in experimental applications.
Are you looking to buy MOTs-C (20mg) online?
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This product is supplied strictly for laboratory research use only and is not approved for human or veterinary administration. It is not intended for diagnostic, therapeutic, or clinical applications. Any reference to biological activity or potential effects is based solely on preclinical or in vitro findings and should not be interpreted as validated clinical outcomes. Researchers are responsible for ensuring proper handling, storage, and disposal in accordance with institutional, federal, and international guidelines. By purchasing or using this material, the buyer confirms that they are a qualified researcher and that the product will be used exclusively in controlled research settings compliant with all applicable regulations.
Sources
https://pmc.ncbi.nlm.nih.gov/articles/PMC4350682
https://pmc.ncbi.nlm.nih.gov/articles/PMC6185997
https://pmc.ncbi.nlm.nih.gov/articles/PMC9905433
