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R3VIVE ME MOTS-C 30mg

99.2%

30mg

R3VIVE ME MOTS-C 30mg is a mitochondrial-derived peptide formulation examined in laboratory environments for metabolic pathway modelling, energy-regulation studies, and cellular signalling research. MOTS-C is commonly referenced in peptide research involving mitochondrial function, endurance-response observation, and metabolic optimisation studies within controlled laboratory settings. For research use only.

£90.00

Technical specifications

Molecular formula

-

Purity

99.2%

Storage

-20°C, dark

CAS Number

1627580-64-6

Molecular weight

2174.6 g/mol

Reconstitution

-

Research applications

Not for human consumption, veterinary, or diagnostic use. Handled by qualified researchers only.

Description

R3VIVE ME MOTS-C 30mg

  R3VIVE ME MOTS-C 30mg is a research-grade mitochondrial-derived peptide formulation created for laboratory studies involving metabolic regulation, mitochondrial signalling, and cellular energy response. MOTS-C is a 16-amino acid mitochondrial-derived peptide associated with the MT-RNR1 gene. Researchers frequently examine this peptide because of its connection with metabolic adaptation and mitochondrial function. In addition, laboratory studies explore how MOTS-C may influence cellular energy pathways under controlled experimental conditions. Furthermore, researchers often include MOTS-C in studies involving endurance modelling, energy utilisation, glucose-response pathways, and metabolic signalling. As a result, it has become an important research compound within mitochondrial and metabolic science. The R3VIVE ME MOTS-C 30mg formulation provides a high-quality research preparation for controlled scientific applications. Moreover, its laboratory-focused format supports studies that require consistency and defined peptide concentrations.

Key Features

  • Mitochondrial-derived peptide formulation
  • Suitable for metabolic pathway research
  • Relevant to cellular energy studies
  • Commonly examined in mitochondrial signalling research
  • Useful for endurance and recovery modelling
  • Research-grade peptide formulation
Because mitochondrial function plays an important role in cellular energy regulation, scientists continue to investigate compounds such as MOTS-C. Additionally, current research explores its relationship with metabolic flexibility and cellular adaptation.

How to Use – Research Reference Only

Researchers evaluate MOTS-C through structured laboratory protocols under controlled experimental conditions. Therefore, qualified professionals should handle the peptide according to established laboratory procedures and suitable research methods. This information is provided strictly for scientific context. It does not provide instructions for human use.

Stacking – Research Context

In laboratory research, scientists may examine MOTS-C alongside other compounds that support related metabolic or mitochondrial investigations. For example, research may include:
  • NAD+ metabolic pathway studies
  • Recovery peptide formulations
  • Endurance research compounds
  • Mitochondrial research compounds
However, researchers should select combinations according to the specific aims of each study. Consequently, stacking approaches can vary significantly between different laboratory models.

Research Applications

Researchers commonly investigate MOTS-C in studies involving:
  • Mitochondrial signalling
  • Cellular energy regulation
  • Metabolic adaptation
  • Glucose-response pathways
  • Endurance modelling
  • Energy utilisation
  • Cellular stress response
  • Healthy aging research
In particular, metabolic research often examines how cells adapt to changing energy demands. Meanwhile, mitochondrial studies explore how signalling pathways influence cellular efficiency and metabolic regulation. Additionally, scientists may use MOTS-C in controlled experiments that evaluate the relationship between mitochondrial activity and whole-cell energy behaviour.

What is MOTS-C?

MOTS-C is a mitochondrial-derived peptide that researchers study for its role in metabolic adaptation, mitochondrial signalling, and cellular energy regulation. Unlike many conventional research peptides, MOTS-C originates from mitochondrial genetic material. Therefore, it provides researchers with an interesting model for studying communication between mitochondria and broader cellular processes. Furthermore, scientists investigate MOTS-C in areas such as endurance biology, glucose metabolism, metabolic flexibility, and mitochondrial response. As research develops, scientists continue to explore how this peptide interacts with pathways involved in energy regulation and cellular adaptation.

Research Disclaimer

R3VIVE ME MOTS-C 30mg is supplied strictly for laboratory and scientific research purposes. It is not intended for human consumption, medical treatment, therapeutic use, diagnostic use, or veterinary application.

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