Editorial educational content. Specialist review is not claimed; consult the original references and limitations.
Research overview
A peptide encoded by a short open reading frame in mitochondrial DNA. The cited cellular and animal work discusses AMPK in connection with folate-cycle and purine-biosynthesis pathways.
Identity and nomenclature
Check the sequence, termini, salt form and modifications for MOTS-c. Similar commercial names do not establish chemical equivalence.
Reading the evidence
For each reference, identify the experimental model, controls, endpoints and material tested. Cellular findings, animal findings and human trials answer different questions; a literature association does not establish use of a BLOPEP batch.
Analytical and storage documents
Use the product specification and batch certificate to check identity, purity and content. Follow material-specific storage information; no universal stability period is inferred from the peptide name.
Sources and verification scope
The mitochondrial-derived peptide MOTS-c promotes metabolic homeostasis ↗
Cell Metabolism / PubMed
Source details (original language)
- Scope
- Existing catalog reference associated with MOTS-c
- Document section
- PMID 25738459
- Limitations
- Inherited bibliographic record; not re-verified in this editorial migration. Follow the primary source. No product/batch-use claim.
- Claim verification date
- Inherited catalog reference; not re-verified in this migration
Q2(R2) Validation of Analytical Procedures ↗
FDA / ICH
Source details (original language)
- Scope
- Validation framework for analytical procedures
- Document section
- Final guidance summary
- Limitations
- Method validation does not certify this company or establish a result for a catalog lot.
- Claim verification date
- 2026-09-09
Related commercial identities
Related research concerns the compound; it does not establish use of our product or lot in the study.
Related reading
How peptides are studied: mechanisms, cells, animals and human trials
How experimental questions, models and analytical methods shape peptide research and interpretation.
Read details →Reading peptide documentation: identity, purity, content and COA
How to distinguish specifications, batch results, assay and microbiological attributes.
Read details →