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MOTS-c (Mitochondrial Open Reading Frame of the 12S rRNA-c) is a mitochondrial-derived peptide composed of 16 amino acids. It plays a vital role in regulating metabolic homeostasis, insulin sensitivity, and energy expenditure. Studies indicate its potential applications in obesity, type 2 diabetes, aging, and skeletal muscle function. This peptide is provided in lyophilized powder form for laboratory research purposes only.
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MOTS-c is a naturally occurring peptide encoded by mitochondrial DNA, not nuclear DNA. It is produced in response to metabolic stress and acts as a regulator of energy balance and insulin sensitivity. MOTS-c has been shown to mimic the effects of exercise at the cellular level, particularly in metabolic tissues such as muscle and fat. Research also suggests that MOTS-c levels decrease with age, making it a molecule of interest in age-related metabolic decline [1].
MOTS-c has demonstrated the ability to improve insulin sensitivity and regulate glucose metabolism. In murine models, it promoted glucose uptake in skeletal muscle and suppressed fat accumulation despite high-fat feeding. These effects are attributed to AMPK pathway activation, a key regulator of energy metabolism [2].
Levels of MOTS-c decline with age, but supplementation in animal studies has reversed age-related physical decline. In aged mice, MOTS-c treatment improved endurance, metabolic flexibility, and even extended lifespan. These results suggest MOTS-c may serve as a longevity-promoting peptide [3].
MOTS-c plays a role in supporting muscle health by promoting mitochondrial biogenesis and increasing muscle fiber regeneration. In studies on aging mice, it enhanced muscle strength and prevented sarcopenia-related decline when combined with exercise regimens [4].
Early studies suggest that MOTS-c may protect against bone density loss. In an ovariectomy-induced osteoporosis model, MOTS-c supplementation mitigated bone loss and supported osteoblast activity, indicating a potential for future research into osteoporosis [5].
MOTS-c is being explored for its influence on cardiovascular markers. Initial findings show potential for reducing vascular inflammation and enhancing endothelial function. While mechanisms remain under investigation, MOTS-c may contribute to overall cardiovascular resilience [2].
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THIS PRODUCT IS INTENDED FOR LABORATORY RESEARCH USE ONLY. NOT FOR HUMAN OR ANIMAL CONSUMPTION.
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