£69.99
For research use only — Not for human or animal use
Our GHK-Cu 100mg pen contains GHK-Cu, a naturally occurring copper-binding tripeptide studied for its role in cellular signalling, tissue remodelling, and extracellular matrix activity. The compound forms when the peptide GHK binds to a copper ion, creating a complex that has been widely investigated in skin, connective tissue, and hair follicle research.
GHK-Cu has been identified naturally in human plasma and other biological fluids. Its ability to bind copper is important because copper participates in several enzyme systems involved in structural tissue maintenance and repair.
GHK-Cu is a copper peptide formed from the amino acid sequence glycyl-L-histidyl-L-lysine bound to a copper ion.
The peptide acts as a carrier for copper, allowing researchers to study how copper-dependent enzymes and signalling pathways influence tissue structure and cellular behaviour.
Studies focus on several biological areas, including:
This broad biological profile is one reason GHK-Cu remains an active subject in peptide and regenerative biology research.
Research involving GHK-Cu often centres on how cells respond to damage and how structural tissue is maintained over time.
One area of interest is tissue remodelling. This process involves the breakdown, repair, and reorganisation of the proteins that make up the extracellular matrix. Researchers study how GHK-Cu may influence these processes through copper-dependent signalling and enzyme activity.
Another area of study involves oxidative stress and inflammatory signalling, both of which can affect tissue structure and cellular function.
Because GHK-Cu is naturally occurring, researchers also use it to investigate how endogenous peptide signalling changes with age and tissue condition.
GHK-Cu has also been studied in models involving the hair follicle and surrounding tissue.
Research in this area looks at how copper peptide signalling may influence follicular cells, extracellular matrix activity, and the local tissue environment around the follicle.
Scientists are particularly interested in whether these pathways may affect:
These findings remain experimental and should not be interpreted as established treatment outcomes.
Published studies involving GHK-Cu have examined several cellular and structural processes rather than a single biological effect.
The scientific value of GHK-Cu comes from this combination of peptide signalling and copper biology, giving researchers a way to study how trace-metal binding may influence wider cellular systems.
Our GHK-Cu 100mg Pen is supplied in a controlled pen format intended for laboratory handling and analytical research protocols.
Storage conditions should remain stable throughout the research period. Protect the formulation from excessive heat, moisture, and direct light, and follow the supplied product specification for temperature requirements.
Disclaimer: This product is supplied strictly for laboratory research purposes only. Not for human or animal consumption.
| Specification | Details |
|---|---|
| Product | GHK-Cu 100mg Pen |
| Active Compound | GHK-Cu (Copper Tripeptide-1) |
| Total Content | 100mg per pen |
| Compound Type | Copper-binding tripeptide |
| Amino Acid Sequence | Gly-His-Lys |
| Metal Complex | Copper (Cu²⁺) complex |
| Alternative Name | Copper Tripeptide-1 |
| Biological Origin | Naturally occurring peptide found in human biological fluids |
| Research Areas | Tissue remodelling, extracellular matrix activity, copper-dependent signalling and hair follicle research |
| Format | Pen-based research formulation |
| Storage | Store under controlled refrigerated conditions according to the supplied product specification |
| Protection | Protect from excessive heat and direct light |
| Handling | For controlled laboratory handling only |
| Intended Use | Laboratory research purposes only |
| Restriction | Not for human or animal consumption |
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