• Research Use Only (RUO)
  • Free shipping on orders over $200
  • Expect 24 hours for order processing
  • Shipping days: Monday–Friday
  • Research Use Only (RUO)
  • Free shipping on orders over $200
  • Expect 24 hours for order processing
  • Shipping days: Monday–Friday

MOTS-c 10MG

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MOTS-C is a mitochondrial-derived peptide used in metabolic and mitochondrial research. It is studied for its role in glucose regulation, insulin sensitivity, and cellular energy balance. This compound supports investigation into mitochondrial signaling and metabolic adaptation pathways.

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⚠️ RESEARCH USE ONLY

This product is for R&D purposes only and is not approved for human or veterinary use.

MOTS-C 10mg – Mitochondrial-Derived Peptide for Metabolic Research

Quantum Biogenix offers research-grade MOTS-C, a mitochondrial-derived peptide actively studied for its role in metabolic regulation, cellular stress response, and energy homeostasis. This compound enables controlled laboratory investigation into mitochondrial signaling pathways and metabolic adaptation mechanisms.

MOTS-C is encoded by mitochondrial DNA and functions as a signaling peptide influencing glucose metabolism, insulin sensitivity, and cellular energy balance. Due to its regulatory effects on metabolic homeostasis, MOTS-C has become a valuable research tool in studies involving mitochondrial communication and metabolic resilience.

Product Name MOTS-C
Category Mitochondrial-Derived Peptide Research Compound
Form Lyophilized Peptide
Content 10mg
Purity ≥98% (HPLC Verified)
Application Metabolic & Mitochondrial Research
Usage Laboratory Research Only

Scientific Overview of MOTS-C

  • Mitochondrial-derived signaling peptide encoded by mtDNA
  • Regulates cellular metabolism and energy homeostasis
  • Influences glucose utilization and insulin sensitivity
  • Plays a role in cellular stress and metabolic adaptation
  • High-purity peptide suitable for laboratory research

Key Research Applications

  • Metabolic Regulation Studies – Investigation of mitochondrial signaling effects on glucose and energy metabolism.
  • Insulin Sensitivity Models – Examination of cellular responsiveness to insulin signaling pathways.
  • Mitochondrial Communication Research – Study of mitochondria-to-nucleus signaling mechanisms.
  • Cellular Stress Response Analysis – Evaluation of metabolic adaptation under stress conditions.
  • Aging & Longevity Research – Assessment of mitochondrial peptides in age-related metabolic models.

Laboratory Handling & Storage

  • Form: Lyophilized peptide powder
  • Purity: ≥98% (HPLC verified)
  • Recommended Storage: Store frozen, protected from light and moisture
  • Handling: Reconstitute using sterile laboratory-grade solvents
  • Stability: Keep sealed and dry until experimental use

Mechanism of Research Interest

MOTS-C functions as a mitochondrial signaling peptide that translocates to the nucleus under metabolic stress conditions, where it influences gene expression related to glucose metabolism and energy regulation. Research indicates MOTS-C activates adaptive metabolic pathways, enhances cellular energy efficiency, and modulates insulin sensitivity, making it a critical compound for studying mitochondrial communication and metabolic flexibility.

Why Choose Quantum Biogenix?

  • High-purity research peptides
  • Batch-tested and quality-verified compounds
  • Consistent formulation standards
  • Research-focused manufacturing protocols
  • Secure and professional laboratory supply handling

Research Use Only Notice

This product is supplied strictly for laboratory research use. It is not intended for human consumption, medical treatment, or veterinary application. Researchers must adhere to institutional safety and regulatory guidelines during use.

Scientific References

  1. Lee C. et al. (2015). The mitochondrial-derived peptide MOTS-C promotes metabolic homeostasis. Cell Metabolism.
  2. Kim K.H. et al. (2018). MOTS-C translocates to the nucleus in response to metabolic stress. Nature Communications.
  3. Reynolds J.C. et al. (2020). Mitochondrial peptides and metabolic regulation. Trends in Endocrinology & Metabolism.

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