- All Products are supplied in lyophilized (powder) form
- Bacteriostatic Water (BAC Water) is sold separately.
- Intended exclusively for laboratory and in vitro research use.
Description
GHK-Cu is a copper-binding peptide research compound designed for laboratory investigation of extracellular matrix signaling, collagen-associated pathway models, cellular remodeling, antioxidant-response systems, and tissue-response research. GHK-Cu is studied in preclinical systems for its role in copper peptide signaling, matrix remodeling pathways, gene-expression models, and cellular repair-associated mechanisms.
This compound is intended strictly for in vitro and preclinical laboratory research.
Specifications
Product Classification: Research-Use-Only (RUO)
Total Content: 50 mg lyophilized powder per vial
Compound: Copper peptide GHK-Cu research compound
Form: Sterile lyophilized peptide compound
Purity: ≥99%
Storage: Store at −20 °C, protected from light
Packaging: Glass vial in protective sleeve
Applications
Intended for preclinical laboratory research only, including:
• Copper peptide signaling research
• Extracellular matrix pathway studies
• Collagen-associated signaling models
• Cellular remodeling experiments
• Antioxidant-response pathway research
• Tissue-response models
• Longevity-associated cellular pathway studies
Warning
Not for human or animal use. For research purposes only.
Scientific Report
Abstract
GHK-Cu is a copper peptide investigated for its role in extracellular matrix regulation, cellular remodeling, antioxidant-response signaling, and tissue-response pathway models. GHK-Cu is designed for controlled laboratory research into collagen-associated signaling, matrix interaction, copper peptide biology, gene-expression pathway models, and cellular stress-response systems.
Mechanistic Pathway
GHK-Cu is designed around copper peptide and extracellular matrix pathway modeling.
Copper Peptide Signaling Pathway
- Supports research into copper-binding peptide activity
• Used in cellular signaling and remodeling models
• Studied for copper-associated biological pathway interaction
Effect: Provides a model for copper peptide pathway research.
Extracellular Matrix Pathway
- Supports investigation of matrix remodeling systems
• Used in collagen-associated pathway models
• Relevant to tissue-response and cellular organization studies
Effect: Enables research into extracellular matrix-associated signaling.
Antioxidant-Response Pathway
- Supports research into cellular stress-response systems
• Used in oxidative stress pathway models
• Helps evaluate downstream protective signaling responses
Effect: Provides a model for antioxidant-response pathway investigation.
Pharmacokinetics / Research Profile
| Compound | Pathway | Research Notes |
| GHK-Cu | Copper peptide / extracellular matrix / antioxidant-response signaling | Copper peptide model for cellular remodeling and tissue-response research |
Dosing Models in Research
Used only in controlled in vitro and preclinical research models to study copper peptide signaling and cellular pathway response. No human or animal-use instructions are provided.
Preclinical Research Highlights
- Studied as a copper peptide research compound
• Used in extracellular matrix and collagen-associated pathway studies
• Supports cellular remodeling and tissue-response research
• Relevant to antioxidant-response and stress-response models
• Useful for longevity-associated cellular pathway investigation
Conclusion
GHK-Cu offers a research-use-only model for studying copper peptide signaling, extracellular matrix interaction, collagen-associated pathways, cellular remodeling, antioxidant-response systems, and tissue-response laboratory research models.
RIGOROUS TESTING
Every batch undergoes comprehensive third-party testing by accredited laboratories to ensure verified purity, identity, and quality standards.
TRANSPARENT RESULTS
We provide a Certificate of Analysis (COA) for every product, delivering clear, detailed, and accessible testing documentation.
RESEARCH GRADE
Our compounds are developed exclusively for research applications, offering consistent quality, precision, and reliability for laboratory use.
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