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Enjoy free shipping on orders over $175
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24/7 customer support
Pure, Potent & Precision
Enjoy free shipping on orders over $175
Save 15% off your first order by subscribing
24/7 customer support
Pure, Potent & Precision
Enjoy free shipping on orders over $175
Save 15% off your first order by subscribing
24/7 customer support
Pure, Potent & Precision
Enjoy free shipping on orders over $175
Save 15% off your first order by subscribing
24/7 customer support
Pure, Potent & Precision
Enjoy free shipping on orders over $175
Save 15% off your first order by subscribing
24/7 customer support
Pure, Potent & Precision

MOTS-C 10MG

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$50.00

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MOTS-C

MOTS-c (Mitochondrial Open Reading Frame of the 12S rRNA type-c) is a naturally occurring mitochondrial-derived peptide that has been studied for its role in cellular metabolism, energy regulation, and metabolic health. MOTS-c is a 16-amino-acid peptide encoded within the mitochondrial genome and is involved in regulating nuclear gene expression in response to cellular stress, particularly in metabolic tissues such as muscle, liver, and adipose tissue.

Overview

MOTS-c has emerged as a key peptide linking mitochondrial function to systemic metabolic regulation. It is reported to influence glucose metabolism, lipid homeostasis, and insulin sensitivity. Preclinical studies suggest that MOTS-c may promote metabolic flexibility, improve exercise performance, and reduce the risk of metabolic disorders such as obesity and type 2 diabetes.

  • Regulates cellular metabolism and energy homeostasis
  • May improve insulin sensitivity and glucose utilization
  • Supports mitochondrial function and metabolic flexibility
  • Studied for potential benefits in obesity, diabetes, and metabolic syndrome

Specifications

  • Peptide Length: 16 amino acids
  • Molecular Formula: C70H123N21O21S2
  • Molecular Weight: 2171.11 g/mol
  • Other Names: Mitochondrial-derived Peptide MOTS-c

Research and Clinical Insights

Metabolic Regulation

MOTS-c plays a significant role in cellular and systemic metabolic regulation. Studies indicate that it can enhance glucose uptake in skeletal muscle, regulate lipid metabolism in adipose tissue, and promote energy homeostasis. These effects are believed to be mediated through activation of AMPK (adenosine monophosphate-activated protein kinase) and modulation of nuclear gene expression.

Exercise Performance and Muscle Function

Preclinical research demonstrates that MOTS-c may improve endurance and skeletal muscle function by increasing mitochondrial biogenesis and enhancing ATP production. Animal studies suggest that MOTS-c administration can mimic some benefits of exercise, promoting improved energy utilization and physical performance.

Insulin Sensitivity and Obesity

MOTS-c has been investigated for its potential to counteract metabolic dysfunction. Research shows that the peptide may improve insulin sensitivity, reduce fat accumulation, and enhance lipid metabolism, which could be relevant in the context of obesity and type 2 diabetes prevention.

Cellular Stress Response and Longevity

MOTS-c may help cells adapt to metabolic and oxidative stress by modulating nuclear gene expression and promoting mitochondrial resilience. These actions suggest potential implications for healthy aging and metabolic health, though clinical studies in humans are still limited.

Usage Considerations

MOTS-c is intended strictly for research and laboratory purposes. It is not approved for therapeutic use in humans outside controlled studies. Proper handling, storage, and laboratory safety protocols should be observed when working with this peptide.

Note: MOTS-c peptide is available for research purposes only. Please review and adhere to all applicable Terms and Conditions before ordering.

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MOTS-C

MOTS-c (Mitochondrial Open Reading Frame of the 12S rRNA type-c) is a naturally occurring mitochondrial-derived peptide that has been studied for its role in cellular metabolism, energy regulation, and metabolic health. MOTS-c is a 16-amino-acid peptide encoded within the mitochondrial genome and is involved in regulating nuclear gene expression in response to cellular stress, particularly in metabolic tissues such as muscle, liver, and adipose tissue.

Overview

MOTS-c has emerged as a key peptide linking mitochondrial function to systemic metabolic regulation. It is reported to influence glucose metabolism, lipid homeostasis, and insulin sensitivity. Preclinical studies suggest that MOTS-c may promote metabolic flexibility, improve exercise performance, and reduce the risk of metabolic disorders such as obesity and type 2 diabetes.

  • Regulates cellular metabolism and energy homeostasis
  • May improve insulin sensitivity and glucose utilization
  • Supports mitochondrial function and metabolic flexibility
  • Studied for potential benefits in obesity, diabetes, and metabolic syndrome

Specifications

  • Peptide Length: 16 amino acids
  • Molecular Formula: C70H123N21O21S2
  • Molecular Weight: 2171.11 g/mol
  • Other Names: Mitochondrial-derived Peptide MOTS-c

Research and Clinical Insights

Metabolic Regulation

MOTS-c plays a significant role in cellular and systemic metabolic regulation. Studies indicate that it can enhance glucose uptake in skeletal muscle, regulate lipid metabolism in adipose tissue, and promote energy homeostasis. These effects are believed to be mediated through activation of AMPK (adenosine monophosphate-activated protein kinase) and modulation of nuclear gene expression.

Exercise Performance and Muscle Function

Preclinical research demonstrates that MOTS-c may improve endurance and skeletal muscle function by increasing mitochondrial biogenesis and enhancing ATP production. Animal studies suggest that MOTS-c administration can mimic some benefits of exercise, promoting improved energy utilization and physical performance.

Insulin Sensitivity and Obesity

MOTS-c has been investigated for its potential to counteract metabolic dysfunction. Research shows that the peptide may improve insulin sensitivity, reduce fat accumulation, and enhance lipid metabolism, which could be relevant in the context of obesity and type 2 diabetes prevention.

Cellular Stress Response and Longevity

MOTS-c may help cells adapt to metabolic and oxidative stress by modulating nuclear gene expression and promoting mitochondrial resilience. These actions suggest potential implications for healthy aging and metabolic health, though clinical studies in humans are still limited.

Usage Considerations

MOTS-c is intended strictly for research and laboratory purposes. It is not approved for therapeutic use in humans outside controlled studies. Proper handling, storage, and laboratory safety protocols should be observed when working with this peptide.

Note: MOTS-c peptide is available for research purposes only. Please review and adhere to all applicable Terms and Conditions before ordering.

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