MOTS-c 10mg

28.96

Availability: Available on back-order SKU: MOTS-C-10mg Categories: , Tags: , ,

MOTS-c 10mg

28.96

In stock

Description

MOTS-c is a mitochondria-derived peptide (MDP) encoded by mitochondrial DNA and studied in laboratory environments for its role in metabolic regulation, energy homeostasis, and cellular signalling pathways.

Unlike many synthetic peptides, MOTS-c originates from mitochondrial genetic expression, making it a key focus in research exploring cellular energy systems, metabolic adaptation, and mitochondrial signalling.

In controlled experimental settings, MOTS-c is investigated for its interaction with metabolic pathways, glucose regulation systems, and cellular stress responses, particularly in relation to energy utilisation and metabolic efficiency.

Across Ireland and Europe, MOTS-c is commonly studied in areas including:

  • Mitochondrial function and signalling
  • Metabolic regulation and glucose pathways
  • Energy homeostasis and cellular adaptation
  • Exercise and metabolic stress research

This product is supplied as a high-purity research peptide, intended strictly for scientific and laboratory use.

Disclaimer: This product is strictly for research purposes only and is not for human consumption.

Technical Information – MOTS-c

Specification Details
Product Name MOTS-c
Compound Type Mitochondria-derived peptide (MDP)
Origin Encoded by mitochondrial DNA
Functional Class Metabolic and energy-regulating peptide
Mechanism of Action Modulates metabolic and mitochondrial signalling pathways
Biological Targets Mitochondria, metabolic pathways, AMPK signalling
Amino Acid Length 16 amino acids
Format Lyophilised powder
Purity Research-grade (high purity)
Storage Refrigerated (2–8°C, protected from light)
Application Laboratory research use only

* Images for illustration purposes only

Further Refrences: PubChem Entry

Researched Benefits & Focus Areas – MOTS-c

1. Metabolic Regulation & Glucose Pathways

MOTS-c has been studied for:

  • Regulation of glucose metabolism in experimental models
  • Influence on insulin sensitivity pathways
  • Investigation of metabolic efficiency mechanisms

Reference basis: Derived from preclinical and molecular biology research examining mitochondrial peptides and metabolic regulation.


2. Mitochondrial Function & Energy Production

Research has explored:

  • Interaction with mitochondrial signalling pathways
  • Role in cellular energy production and regulation
  • Influence on energy homeostasis mechanisms

Reference basis: Based on studies investigating mitochondrial-derived peptides and their role in cellular energy systems.


3. Cellular Stress Response & Adaptation

MOTS-c is commonly studied for:

  • Activation of cellular stress response pathways
  • Adaptation to metabolic and environmental stressors
  • Interaction with AMPK signalling pathways (research context)

Reference basis: Supported by research into mitochondrial signalling and adaptive cellular responses.


4. Exercise & Metabolic Performance Research

  • Studied in models of exercise physiology and endurance
  • Explored for energy utilisation during physical stress
  • Investigated for metabolic adaptation mechanisms

Reference basis: Derived from experimental studies examining mitochondrial peptides in exercise and metabolic performance contexts.


Disclaimer: These are research-based findings only. This product is not intended for human use or consumption.

Researched Risks & Considerations – MOTS-c

1. Metabolic System Complexity

  • May influence multiple metabolic pathways simultaneously
  • Potential for unpredictable responses in experimental models

Reference basis: Based on studies examining complex metabolic signalling networks.


2. Mitochondrial Interaction Effects

  • Direct interaction with mitochondrial processes
  • Potential for broad cellular impact

Reference basis: Derived from research into mitochondrial function and signalling pathways.


3. Off-Target Biological Activity

  • May affect various tissues and systems
  • Broad interaction across cellular signalling networks

Reference basis: Based on studies highlighting systemic effects of mitochondrial peptides.


4. Limited Long-Term Research

  • Lack of extensive long-term data
  • Primarily studied in preclinical and laboratory environments

Reference basis: Reflects the current stage of MOTS-c research.


Disclaimer: These risks are based on available research data only. This product is strictly a research peptide and not for human consumption.

Additional information

Weight 23 kg
Dimensions 12 × 23 × 56 cm
Quantity

1 Vial, 1 Kit (10 Vials)

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