Dex Pharma Mot-C Pro 40mg/3ml

R 1,400.00

Product Description

The Dex Pharma MOTS-C Pro 40mg/3ml Pen is a precision-formulated research peptide presented in a convenient pre-filled pen format, designed for laboratory and scientific investigation into mitochondrial function, cellular metabolism, and metabolic health.

MOTS-C (Mitochondrial Open Reading Frame of the 12S rRNA-c) is a naturally occurring mitochondrial-derived peptide (MDP) that has become an important area of research due to its potential role in regulating energy metabolism, glucose homeostasis, insulin sensitivity, and exercise physiology.

The Dex Pharma pre-filled pen offers researchers a consistent and convenient presentation, eliminating the need for manual peptide reconstitution while providing accurate dispensing for controlled research protocols.

For Research Use Only. Not intended for human consumption or therapeutic use.

Key Features

Key Features


  • 40mg MOTS-C peptide per 3ml pre-filled pen

  • Premium Dex Pharma formulation

  • Convenient ready-to-use research pen

  • Precision dispensing mechanism

  • Designed for laboratory and scientific research

  • Eliminates manual reconstitution

  • Secure storage and transport

  • Manufactured for research applications
Dosage & Usage

Research Reference & Study Protocol Notes

The information below is provided solely as a summary of approaches reported in published preclinical and clinical research. It is intended to help researchers locate and interpret the scientific literature and should not be considered instructions for clinical or personal use.

Published studies have investigated MOTS-C across a range of experimental models, often focusing on metabolic regulation, exercise physiology, and mitochondrial signalling. Research protocols vary considerably depending on study design, species, objectives, and outcome measures.

When reviewing the literature, researchers should consider:


  • Experimental model and study population

  • Duration of the research protocol

  • Primary metabolic endpoints

  • Mitochondrial function assessments

  • Exercise performance outcomes

  • Glucose metabolism measurements

  • Safety observations reported by investigators

Always consult the original peer-reviewed publications for complete methodology and protocol details.

FAQ's & Tips

Research Reference & Study Protocol Notes

The information below is provided solely as a summary of approaches reported in published preclinical and clinical research. It is intended to help researchers locate and interpret the scientific literature and should not be considered instructions for clinical or personal use.

Published studies have investigated MOTS-C across a range of experimental models, often focusing on metabolic regulation, exercise physiology, and mitochondrial signalling. Research protocols vary considerably depending on study design, species, objectives, and outcome measures.

When reviewing the literature, researchers should consider:


  • Experimental model and study population

  • Duration of the research protocol

  • Primary metabolic endpoints

  • Mitochondrial function assessments

  • Exercise performance outcomes

  • Glucose metabolism measurements

  • Safety observations reported by investigators

Always consult the original peer-reviewed publications for complete methodology and protocol details.

Research

Research Applications

MOTS-C continues to be investigated in research involving:


  • Mitochondrial signalling

  • Cellular energy production

  • Metabolic flexibility

  • Exercise physiology

  • Glucose metabolism

  • Insulin sensitivity

  • Healthy ageing research

  • Skeletal muscle metabolism

  • Obesity and metabolic syndrome models

  • AMPK pathway activation

Research remains ongoing, and conclusions continue to evolve.

Why Researchers Choose Pre-Filled Pens

Compared with traditional lyophilised peptide vials, pre-filled research pens provide several practical advantages within laboratory environments.

Benefits include:


  • No peptide reconstitution required

  • Reduced preparation time

  • Improved dispensing consistency

  • Less handling during research

  • Convenient storage

  • Easy transport

  • Reduced preparation error
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