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MOTS-c

Price range: $80.00 through $180.00

Product Features:

Metabolic and Energy Regulation Research
Mitochondrial Signaling and Function
Glucose and Insulin Sensitivity Pathways
Cellular Stress and Adaptation Research
Mitochondrial-Derived Peptide Studies

Usage Instructions

For research purposes only. Not for human consumption. Follow proper reconstitution and storage protocol.

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MOTS-c — Research Overview

MOTS-c (Mitochondrial Open Reading Frame of the 12S rRNA Type-c) is a mitochondrial-derived peptide that has gained significant attention in metabolic and cellular research. Unlike traditional peptides encoded by nuclear DNA, MOTS-c originates from mitochondrial DNA and is studied for its role in regulating cellular metabolism, energy homeostasis, and stress adaptation.

Research interest in MOTS-c centers on its involvement in metabolic signaling pathways, insulin sensitivity mechanisms, and cellular responses to metabolic stress.


What Is MOTS-c?

MOTS-c is a short bioactive peptide encoded within the mitochondrial genome. It is naturally expressed in multiple tissues and has been shown in research models to interact with key metabolic regulators involved in glucose utilization, fatty acid metabolism, and cellular energy balance.

In laboratory settings, synthetic MOTS-c is used to study mitochondrial communication, metabolic adaptation, and peptide-driven signaling pathways.


Areas of Research Interest

Metabolic Regulation

MOTS-c has been studied for its potential involvement in:

  • Glucose metabolism and insulin sensitivity pathways

  • Fatty acid utilization and metabolic flexibility

  • Energy balance and nutrient sensing mechanisms

Mitochondrial and Cellular Function

Research explores MOTS-c in relation to:

  • Mitochondrial signaling and communication

  • Cellular energy efficiency

  • Metabolic stress response pathways

Exercise and Metabolic Adaptation Research

MOTS-c has been evaluated in experimental models examining:

  • Adaptive responses to metabolic demand

  • Cellular endurance and energy utilization signaling

  • Metabolic efficiency under stress conditions

Aging and Cellular Resilience

Additional research interest includes:

  • Age-related metabolic signaling

  • Cellular resilience and stress adaptation

  • Mitochondrial-derived peptide function over time

Findings from laboratory and animal studies may not translate to human outcomes.


Research Status

  • Research is primarily preclinical and experimental

  • Human clinical data is limited and investigational

  • MOTS-c is not FDA-approved for therapeutic or medical use

  • Ongoing studies continue to explore mechanisms and signaling roles


Research Handling & Compliance

MOTS-c is intended strictly for laboratory and research use. Proper handling, storage, and experimental protocols should be followed in accordance with standard research practices.


Summary

MOTS-c represents a unique class of mitochondrial-derived peptides with growing relevance in metabolic, mitochondrial, and cellular research. Its role in energy regulation and stress adaptation continues to make it an important focus within peptide research.


Disclaimer

For research purposes only.
Not for human consumption.
Not intended to diagnose, treat, cure, or prevent any disease.

mg

10mg, 40mg

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