MOTS-C

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Mitochondrial-derived peptide
A mitochondrial-derived peptide that regulates energy balance and metabolic health, enhancing glucose uptake and cellular stress resistance.

Product price :

Price range: د.إ 900.00 through د.إ 1,350.00

Additional information

Directions

SC 0.5–1 mg once daily, 5–6 days/week at bedtime. 4–8 week breaks.

Key Benefits

Increases glucose uptake and insulin sensitivity
Boosts fat oxidation and energy metabolism
Reduces visceral and subcutaneous fat
Supports healthy aging and mitochondrial health

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More information

 What is MOTS-C?

MOTS-C is a small peptide produced naturally by the body and associated with mitochondrial function and cellular metabolism. It has attracted interest as a research peptide because of its potential role in how cells use energy and respond to metabolic stress.

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How it works

MOTS-C is believed to influence metabolic pathways involved in glucose utilization, energy production, and cellular stress responses. Research suggests it may help cells adapt to metabolic challenges and maintain energy balance.

Research areas

MOTS-C is being investigated for potential effects involving:

  • Metabolic health
  • Glucose regulation
  • Energy metabolism
  • Mitochondrial function
  • Exercise and physical performance
  • Cellular stress and aging-related pathways

Potential benefits under research

Preclinical research has suggested possible roles in:

  • Improving metabolic function
  • Supporting insulin sensitivity
  • Influencing energy utilization
  • Promoting cellular resilience

However, these findings should not be interpreted as proven benefits in humans.

Safety

MOTS-C remains an experimental research peptide, and its long-term safety, effective dosing, and clinical benefits in humans have not been adequately established. Products sold outside regulated clinical settings may also vary in purity and composition.

In summary

MOTS-C is a mitochondria-derived peptide being researched for its potential role in metabolism, energy regulation, and cellular health. It is particularly interesting because it may connect mitochondrial activity with whole-body metabolic function, but significantly more human research is needed before its therapeutic potential can be established.