MOTS-C Peptides

Built for precision-driven workflows, this MOTS-C vial supports reliable, repeatable research from the very first run.

The MOTS-C peptide from Peptide Scientific Labs is supplied as a lyophilized vial for straightforward lab handling and storage. This research-only peptide is presented in a clean, stable format with a total strength of 10mg, allowing qualified personnel to reconstitute according to protocol requirements. As a longevity-focused peptide, MOTS-C is frequently explored across metabolic and cellular models where consistency and purity matter.

  • Each vial contains 10mg of MOTS-C, a mitochondrial-derived peptide widely used in studies investigating metabolic signaling pathways, cellular stress responses, and related mechanisms in preclinical models.

In use, the lyophilized format supports dependable dissolution and controlled preparation by trained researchers. Its dry, shelf-stable presentation helps maintain integrity through storage and transport, while enabling measured aliquoting for method development, reference standardization, and repeat testing. With clear labeling and careful packaging, this vial is suited for laboratories that prioritize clarity, traceability, and consistent experimental conditions.

Peptide Scientific Labs operates with a quality-first mindset. Each batch is produced in a controlled environment and verified via HPLC and mass spectrometry for identity and purity, with a lot-specific Certificate of Analysis available for review. Every vial is sealed and labeled for traceability, reflecting disciplined handling from synthesis through final packaging. For optimal stability, store lyophilized material in a cold, dry, light-protected environment and follow institutional best practices for reconstitution and use.

Why choose Peptide Scientific Labs

  • High-purity peptide verified by HPLC/MS for identity and quality.
  • Lot-level documentation with batch COA and clear traceability.
  • Controlled production in a USA-based facility committed to rigorous standards.
  • Professional packaging designed for integrity and research-ready handling.

For laboratory research use only. Not for human consumption, medical, or veterinary use. Handle exclusively by qualified professionals under appropriate laboratory conditions.

Total Strength
10mg
Strength Per vial
10mg/vial
Total Units
1 vial
Weight
0.70oz

We prioritize your satisfaction above all, which is why we offer a 100-day, no-questions-asked guarantee on all our products. Learn more about our return policy.

  • Most orders ship within 24 hours and arrive within 3 to 5 days of leaving our warehouse.
  • Shipping is free on orders of $99+ (except Hawaii and Alaska).
  • All orders ship in discreet packaging via USPS Ground Advantage mail.

Delivery restrictions vary by state.

Customer Reviews

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Based on 2 reviews
Reviews (2)
Hard to find quality MOTS-C from a US vendor but these guys deliver. Literally. Got my order in 4 days and the CoA matched what we verified independently. Our metabolic signaling studies are finally producing consistent data.
Been researching mitochondrial peptides for a while now and this MOTS-C is legit. Purity is on point, the lyophilized powder looks clean, and the price with their current sale is honestly unbeatable 🧪 Already placed a second order for our lab.

Frequently Asked Questions

What is MOTS-C?

MOTS-C is a mitochondrial-derived peptide, meaning it originates from the mitochondrial genome rather than the classic nuclear-encoded peptide families. It has become popular in metabolic and exercise-physiology research because of its link to cellular energy sensing. For a product FAQ, it should be described as a research peptide for mitochondrial and metabolic studies.

What is MOTS-C typically studied for?

MOTS-C is commonly studied in relation to metabolic flexibility, AMPK-linked signaling, insulin sensitivity, exercise adaptation, and mitochondrial stress response. The compliant way to describe it is that it is investigated in those pathways, not that it is an approved intervention for metabolic disease or performance.

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