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Peptide Formulations

MOTS-C

Is a mitochondrial-derived peptide composed of 16 amino acids. It has gained attention for its potential role in metabolic regulation and its influence on age-related conditions.

 

Chemical Structure 

MOTS-C is a small peptide with a sequence of amino acids that reflects its mitochondrial origin. Its chemical formula is C60H98N16O15S. The structure is integral to its biological functions, particularly in energy metabolism.

 

Mechanisms of Action 

MOTS-C is believed to enhance cellular energy production by promoting mitochondrial function. It may also regulate metabolic processes, improve insulin sensitivity, and support muscle health, contributing to overall metabolic homeostasis.

 

Clinical Applications 

Research suggests that MOTS-C may have therapeutic potential in addressing metabolic disorders, obesity, and age-related diseases. Its role in enhancing physical performance and recovery is also being investigated.

 

Research Findings 

Studies have indicated that MOTS-C can improve metabolic flexibility and increase endurance. Animal and preliminary human studies show promise in its ability to positively influence body composition and energy expenditure.

 

Administration and Dosage 

MOTS-C is typically administered via injection, with dosages varying based on research protocols. Current studies often use doses in the range of 0.1 to 0.5 mg per kg of body weight, but specific recommendations may differ.

 

Safety and Side Effects 

MOTS-C is generally considered safe, with minimal reported side effects in clinical trials. However, long-term safety data are limited, so it is advisable to consult healthcare professionals before use.

 

Conclusion 

MOTS-C is a promising peptide with potential benefits for metabolic health and aging. Ongoing research will further clarify its mechanisms, effectiveness, and safety, positioning it as a potentially valuable tool in metabolic and age-related interventions. As knowledge expands, MOTS-C may play a significant role in future therapeutic strategies.

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