GHK-Cu
£18.50
| Quantity | Price | Discount |
|---|---|---|
| 2 | £17.58 | 5% |
| 3-4 | £16.65 | 10% |
| 5+ | £15.73 | 15% |
- Purity: ≥99% (HPLC)
- Batch-controlled manufacturing
- Secure packaging for laboratory handling
- Storage: Store lyophilised powder frozen for long-term stability.
- Following preparation in accordance with laboratory protocols, store solutions refrigerated (2– 8 °C).
- Research use only (not for human or veterinary use)
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- Purity: ≥99% (HPLC)
- Batch-controlled manufacturing
- Secure packaging for laboratory handling
- Storage: Store lyophilised powder frozen for long-term stability.
- Following preparation in accordance with laboratory protocols, store solutions refrigerated (2– 8 °C).
- Research use only (not for human or veterinary use)
Copper is an essential trace element involved in countless biological processes, serving as a critical cofactor for enzymes that regulate cellular signalling, protein function and tissue biology. GHK-Cu has become a recognised laboratory research peptide within this field, appearing in studies exploring copper biology, extracellular matrix research and molecular communication.
As researchers continue to investigate the biological role of copper-binding peptides, GHK-Cu remains an important subject of laboratory research across multiple areas of molecular biology.
Key Research Areas
- Copper biology
- Cellular signalling
- Extracellular matrix biology
- Gene regulation
Originally identified as a naturally occurring tripeptide with a high affinity for copper ions, GHK-Cu has attracted sustained scientific interest because of its broad relevance across multiple areas of experimental biology.
Rather than being investigated within a single biological pathway, it has featured in laboratory research examining cellular signalling, gene regulation, tissue organisation and protein synthesis. This multidisciplinary research profile has established GHK-Cu as a familiar research peptide within molecular biology and biochemistry, where scientists continue to explore the mechanisms responsible for maintaining healthy cellular environments.
One of the principal reasons GHK-Cu remains an important subject of laboratory investigation is its relationship with copper biology. Copper is required for the activity of numerous enzymes that support normal cellular processes, including those involved in energy production, antioxidant defence and connective tissue biology.
Maintaining appropriate copper balance is essential for cellular function, making the interaction between copper-binding peptides and biological systems an important area of scientific research. Experimental studies involving GHK-Cu continue to explore these molecular relationships under controlled laboratory conditions.
Closely connected to this work is the study of the extracellular matrix. This complex structural network provides support for cells while influencing communication, organisation and tissue architecture throughout the body.
Researchers continue to investigate the biological pathways responsible for extracellular matrix maintenance and remodelling, as these processes play a fundamental role in normal physiology. GHK-Cu has appeared in experimental studies examining these mechanisms, contributing to a broader understanding of how cells interact with their surrounding environment.
Scientific interest in GHK-Cu also extends to cellular signalling and gene regulation. Cells constantly exchange molecular signals that coordinate growth, adaptation and protein production in response to changing biological conditions.
Understanding how these signalling networks are regulated remains a central objective of molecular biology, with GHK-Cu continuing to feature in laboratory investigations exploring the pathways that govern cellular communication and physiological organisation.
What distinguishes GHK-Cu from many other research peptides is its close association with both trace element biology and cellular communication. Rather than focusing on a single area of investigation, it has become relevant to studies spanning biochemistry, molecular signalling, connective tissue biology and extracellular matrix research.
This broad scientific profile continues to make GHK-Cu a recognised laboratory research peptide for scientists seeking to better understand the complex biological systems that maintain cellular structure and function.
This overview introduces GHK-Cu as a laboratory research peptide and highlights the scientific areas in which it continues to be investigated.
For researchers wishing to explore the published literature, biological pathways and experimental evidence in greater depth, our dedicated GHK-Cu Research Guide provides a comprehensive overview of the peptide and its role within contemporary molecular biology research.
Chemical name: GHK-Cu (Copper tripeptide-1 complex)
Synonyms: Copper tripeptide-1; GHK-Cu; Gly-His-Lys copper complex
Peptide length: 3 amino acids (tripeptide) + copper complex
Sequence (1-letter): GHK (copper complex)
Sequence (3-letter): Gly-His-Lys (copper complex)
Molecular formula: See COA (complex/salt form may vary)
Molecular weight: See COA (complex/salt form may vary)
CAS: See COA (may vary by listing/form)
Form: Lyophilised (freeze-dried) powder
Appearance: Blue to blue-green solid (typical for copper complexes; may vary by batch)
This product is supplied strictly for laboratory research purposes. It is not intended for human consumption or veterinary use and is not marketed for the diagnosis, treatment, cure, mitigation, or prevention of any disease or medical condition. No directions for personal use are provided or implied. The purchaser is responsible for ensuring compliant handling, storage, and use in accordance with applicable laws and regulations.
Certificate of Analysis for GHK-Cu — verifying purity, identity, and quality.

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