MOTS-C 10mg

Price range: $25.00 through $40.00

Buy MOTS-c 10mg

Buy MOTS-c, a mitochondrial-derived peptide (MDP) composed of 16 amino acids, which plays a critical role in cellular metabolic regulation. Synthesized within mitochondria, MOTS-c functions by modulating the cellular energy balance through pathways involved in glucose metabolism, insulin sensitivity, and cellular stress response.  MOTS-c exerts its effects by translocating to the nucleus, where it influences the expression of genes related to mitochondrial biogenesis and metabolic regulation, particularly under conditions of metabolic stress. Research has shown this peptide to improve exercise capacity, reduce obesity, insulin resistance and other disease processes such as osteoporosis and the mitigation of metabolic disorders and age-associated diseases.

  • Storage: Store lyophilized peptide at -4°F. Once reconstituted, store at 36–46°F and use within 30 days. Avoid repeated freeze-thaw cycles.

  • For laboratory research use only. Not for human or veterinary use.

Description

MOTS-C 10mg

MOTS-C 10mg for sale online at Peptides Link Lab.

What is MOTS-c?

MOTS-c is a 16–amino acid peptide encoded in the mitochondrial genome. Also, studied for its role in cellular metabolism and mitochondrial signaling pathways.

MOTS-c: A Metabolism Regulating Peptide

Buy MOTS-c, a mitochondrial-derived peptide that plays a critical role in regulating metabolism, particularly in how cells process fats and sugars.

  • Firstly, Metabolic Flexibility: Improves insulin sensitivity and supports healthier metabolism.
  • Caloric Restriction Mimicry: Mimics the effects of caloric restriction, a known strategy for extending lifespan.
  • Exercise Capacity: Enhances physical performance by improving energy balance and stress resistance.
  • Longevity Support: Offers potential benefits in healthy aging by combating metabolic syndrome and related disorders.

Research and Applications:

MOTS-c is gaining attention in metabolic and aging research, with potential therapeutic applications for obesity, diabetes, and enhancing longevity.

In addition, Explore the research-backed categories where MOTS-c demonstrates significant potential and applicability:

1. Metabolic Health

  • MOTS-c is best known for its role in regulating metabolic processes and improving insulin sensitivity. Thus, It helps enhance mitochondrial function, promoting efficient energy utilization and glucose metabolism, which is particularly beneficial for individuals with metabolic syndrome or type 2 diabetes.

2. Weight Loss

  • By improving metabolic efficiency and enhancing fat metabolism, MOTS-c can assist with weight loss. Additionally, It helps the body utilize fat stores more effectively, making it a strong candidate for weight management protocols.

3. Performance & Recovery

  • MOTS-c has been shown to improve physical performance and endurance by enhancing energy production at the cellular level. More so, Its ability to boost mitochondrial function supports better physical output and faster recovery from exercise.

4. Cognitive & Mood Enhancement

  • Although not its primary use, MOTS-c’s role in improving metabolic health and energy production can positively influence brain function and mood by ensuring that the brain receives adequate energy for optimal performance.

5. Anti-Aging & Longevity

  • By supporting mitochondrial health and efficient cellular function. MOTS-c can be part of anti-aging strategies aimed at maintaining energy levels, metabolic efficiency, and overall cellular health.

Equally important, These categories of research use highlight MOTS-c’s applications in metabolic regulation, weight management, enhanced performance, cognitive health, and longevity support.

Research Findings

MOTS-c has been studied in metabolic, cellular, and systemic models, with research highlighting its role in mitochondrial function, energy regulation, and metabolic balance. Studies also report activity in glucose utilization, insulin sensitivity, and cellular stress responses in preclinical settings.

Key Areas of Research:

  • Firstly, Metabolic: glucose, insulin, energy balance
  • Cellular: mitochondrial function, stress response, repair
  • Lastly, Systemic: protection, recovery and resilience

Together, these findings suggest broad experimental potential for MOTS-c across metabolic, cellular, and systemic pathways. By engaging mitochondrial biology and modulating energy and stress responses, MOTS-c provides a versatile platform for research into metabolic regulation, cellular recovery, and systemic health in laboratory models.

Additional information

Vials

1 Vials, 2-5 Vials, 6-9 Vials, 10 Vials and above

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