Azure Synthetics Azure Synthetics Research peptides, clearly documented.
MOTS-c

Cellular-biology research

MOTS-c

Lyophilized mitochondrial and cellular-signaling research material

MOTS-c is a mitochondrial-derived peptide studied in metabolic stress, AMPK-adjacent signaling, glucose metabolism, and cellular adaptation literature.

价格范围:62.99 $ 至 450.99 $
98.8%-99.4% Lyophilized powder 10 mg
Available certificate of analysis

This product has an available COA with reported batch details and test results.

Open available COA

仅供实验室研究使用。不适用于人类或兽医用途。并非旨在诊断、治疗、治愈、减轻或预防疾病。

存储

Keep sealed, cold, dry, and protected from heat swings. Confirm product-specific storage on arrival.

Shipping notes

Packed for transit stability with order support available for warm-weather routes.

Batch reference

Batch-linked certificate support is available through the documentation desk.

研究背景

MOTS-c 研究资料

MOTS-c is a mitochondrial-derived peptide encoded within mitochondrial 12S rRNA and studied as a signal connecting mitochondrial status with cellular metabolism. Research examines metabolic stress, AMPK-adjacent signaling, glucose handling, mitochondrial-to-nuclear communication, gene expression, exercise-related models, and aging-associated markers. It differs from SS-31, which is studied primarily for interaction with the inner mitochondrial membrane and cardiolipin. MOTS-c is selected when a project focuses on signaling and metabolic adaptation rather than direct membrane stabilization. Most mechanistic evidence is preclinical, while human literature includes biomarker and observational work; neither establishes the performance of a specific catalog batch.

Molecular class

16-residue mitochondrial-derived peptide

Sequence / composition

  1. M
  2. R
  3. W
  4. Q
  5. E
  6. M
  7. G
  8. Y
  9. I
  10. F
  11. Y
  12. P
  13. R
  14. K
  15. L
  16. R

Defined amino-acid chain, shown in standard one-letter notation.

Research design note

Research commonly tests its mitochondrial-to-nuclear signaling context alongside cellular stress and metabolic endpoints.

拟议机制

A mitochondrial-derived peptide proposed to act as a metabolic stress signal. Reported pathways include AMPK activation, altered folate and purine metabolism, GLUT4-related glucose uptake, and stress-dependent movement to the nucleus where it may influence gene expression.

研究中报告的作用

  • Cell studies report AMPK-related signaling, improved glucose uptake, stress resistance, and changes in metabolic gene expression.
  • Mouse studies report improved insulin sensitivity, exercise capacity, metabolic homeostasis, and resistance to diet- or age-related metabolic stress.
  • Human studies are mainly observational or biomarker based and do not establish the effects of administered MOTS-c.

常见研究终点

AMPK phosphorylation, glucose uptake, insulin sensitivity, mitochondrial and nuclear gene expression, exercise capacity, body composition, metabolic stress, and circulating MOTS-c levels.

证据与局限

Mechanistic and animal evidence is promising, but interventional human evidence is limited and pharmacology remains incompletely defined.

External reading

Literature for context—not product proof.

Third-party sources describe their own research materials and methods. They do not validate a specific Azure catalog batch.

Support and documentation

Questions about this product?

Where can I find product documentation?

Open the direct COA link on this page. For other batch documents, contact support with the product name and any relevant order or batch reference.

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