PEPTIDES

MOTS-c

20 mg · Research Compound

Research material provided with clear specifications and available analytical documentation.

20 mg
Presentation
Lyophilized
Form
Research
Compound
Batch documentation
When available
$55.00 USD / unit
Research Inquiry

Contact us for product details, availability, or bulk inquiries.

Product Overview

A mitochondrial-derived peptide investigated in cellular energy metabolism, insulin sensitivity and responses to metabolic stress, including preclinical models.

MOTS-c is listed in the EULIX Research catalog as a 20 mg research compound.

Review the product identity, presentation and batch documentation together when consulting analytical documentation.

Research Use Only

For laboratory research and analytical purposes only. Not for human or veterinary use.

Product Specifications

Compound
MOTS-c
Presentation
20 mg
Composition
MOTS-c
Form
Lyophilized material
Storage
Refer to label and batch documentation
Intended Purpose
Research and analytical use only
Brand
EULIX Research

Quality & Testing

Transparency at the Batch Level

Available analytical documentation identifies a specific sample. Review the published report for:

  • Compound identification
  • Batch or lot reference
  • Analytical testing results
  • Laboratory and report date

Laboratory reports require a confirmed match to the supplied batch. Review the available documents using the COA / Lab Report button.

Scientific Research & References

View All Research

Search independent scientific sources for MOTS-c. Published research does not validate this product or its batch.

References checked September 9, 2026. Recent relevant publications are prioritized. Research does not validate EULIX materials or batches.

2026 · Mechanistic research

MOTS-c and interferon-linked host defense

Research on endogenous MOTS-c and immune signaling, including human monocytes. eLife, August 2026.

Read publication
2026 · Preclinical research

MOTS-c and muscle mitochondrial bioenergetics

Investigation of PGC-1α / AMPK-dependent mechanisms. Free Radical Biology and Medicine, March 2026.

Read publication