MOTS-C 10mg
$79.00 Original price was: $79.00.$59.00Current price is: $59.00.
MOTS-c is a mitochondrial-derived peptide studied for its role in cellular energy regulation, metabolic signaling, and adaptive stress response. In research settings, MOTS-c has been explored for its involvement in glucose metabolism, mitochondrial efficiency, and exercise-related metabolic adaptation.
MOTS-c is a unique bioactive peptide encoded by mitochondrial DNA, making it distinct from most peptides that originate from nuclear DNA. In research settings, MOTS-c has attracted significant interest for its role in cellular energy regulation, metabolic signaling, and stress adaptation at the mitochondrial level — often referred to as the “powerhouse” of the cell.
Because mitochondria play a central role in energy production, metabolism, and cellular resilience, MOTS-c is widely studied for its involvement in how cells respond to metabolic stress, nutrient availability, and physical exertion. Research suggests that MOTS-c may act as a signaling molecule that helps cells adapt to changing energy demands, particularly during periods of caloric restriction, exercise, or metabolic challenge.
In laboratory and preclinical research, MOTS-c has been examined for its potential influence on glucose metabolism, insulin sensitivity pathways, and fat oxidation signaling. These properties have made it a frequent topic of interest in metabolic research, longevity science, and exercise physiology studies.
MOTS-c has also been explored for its relationship to cellular stress resistance and adaptive responses. Some research indicates it may help support mitochondrial efficiency and communication between mitochondria and the cell nucleus, which is essential for maintaining metabolic balance and cellular function over time.
Due to its mitochondrial origin and systemic signaling role, MOTS-c is often discussed in research related to:
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Metabolic efficiency and energy regulation
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Glucose utilization and insulin-related signaling pathways
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Exercise adaptation and endurance-related research
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Cellular stress response and resilience
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Mitochondrial health and longevity science
Researchers are particularly interested in MOTS-c because natural levels appear to decline with age, which has led to ongoing investigation into its potential role in age-related metabolic changes and reduced cellular energy capacity.
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