GHK-Cu 50MG
Copper Peptide Research Compound
Product Overview
GHK-Cu is a naturally occurring copper-binding peptide complex that has become one of the most extensively researched copper peptides in modern scientific literature. Researchers frequently study GHK-Cu for its involvement in cellular communication, gene expression pathways, copper transport mechanisms, and peptide-mediated biological signaling.
The unique combination of the GHK peptide sequence with copper ions has generated significant scientific interest across multiple research disciplines. Its role in molecular signaling systems and cellular regulatory processes continues to make it a valuable compound for advanced laboratory investigations.
Research Applications
- Copper peptide research
- Cellular signaling investigations
- Gene expression studies
- Molecular communication analysis
- Protein interaction research
- Cellular regulation studies
- Biochemical pathway evaluation
- Laboratory peptide characterization
Scientific Description
GHK-Cu consists of the naturally occurring tripeptide glycyl-L-histidyl-L-lysine complexed with copper. Scientific investigations have examined its relationship with cellular signaling networks, gene regulatory mechanisms, protein interactions, and molecular communication pathways.
Researchers continue to study GHK-Cu in laboratory models involving cellular activity, copper transport processes, extracellular matrix biology, and peptide-driven signaling systems. Its broad range of research applications has contributed to its reputation as one of the most recognized compounds within peptide science.
Due to its extensive presence in scientific literature and its unique copper-binding characteristics, GHK-Cu remains an important research compound for investigators exploring molecular biology, cellular regulation, and advanced peptide research models.
Research Use Statement
For laboratory research and analytical purposes only. Not intended for human consumption, therapeutic use, medical use, veterinary use, or diagnostic applications.













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