GHKC-u
CAS #: 89030-95-5

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GHKC-u
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GHKC-u
50mg
GHKC-u Overview
GHK-Cu (Copper Tripeptide-1) is a naturally occurring copper-binding peptide composed of the amino acid sequence glycyl-L-histidyl-L-lysine complexed with copper ions. First identified in human plasma, GHK-Cu has become one of the most extensively studied peptides in regenerative medicine, tissue repair, skin biology, and cellular signaling research. Researchers have investigated GHK-Cu for its involvement in extracellular matrix remodeling, collagen synthesis, wound healing, angiogenesis, stem cell signaling, and gene expression regulation. Due to its naturally occurring presence within the human body and broad range of biological activities, GHK-Cu has attracted significant interest across multiple fields of biomedical research. GHK-Cu remains an important investigational compound for studying tissue regeneration, cellular communication, and mechanisms associated with healthy aging and tissue maintenance.
History
GHK-Cu was first discovered in 1973 by Dr. Loren Pickart while studying factors present in human plasma that appeared to influence tissue regeneration and cellular function. Researchers identified the naturally occurring tripeptide GHK and later found that its biological activity was significantly enhanced when bound to copper ions. Over subsequent decades, scientific investigations expanded into areas involving wound healing, skin regeneration, extracellular matrix remodeling, and cellular signaling. Researchers observed that GHK-Cu appeared to influence numerous genes involved in tissue maintenance, repair processes, and regenerative pathways. Today, GHK-Cu remains one of the most extensively researched regenerative peptides, with studies continuing to examine its role in tissue biology, gene regulation, collagen production, and cellular health.
GHKC-u Structure
- CAS #
- 89030-95-5
- Molecular Formula
- CββHββCuNβOβ
- Sequence
- Tripeptide (Gly-His-Lys) bound to copper
Research Findings
GHK-Cu is a naturally occurring copper-binding tripeptide that has been extensively studied for its potential involvement in tissue repair, cellular signaling, and regenerative biology. Research suggests that GHK-Cu may influence numerous biological pathways associated with tissue maintenance and cellular communication. One of the primary areas of investigation involves extracellular matrix remodeling and collagen regulation. Experimental studies have examined how GHK-Cu may influence collagen synthesis, elastin production, glycosaminoglycan formation, and overall tissue architecture. These findings have contributed to significant interest in skin biology and connective tissue research. Researchers have also explored GHK-Cu's role in wound healing and regenerative processes. Experimental models have demonstrated effects on cellular migration, angiogenesis, tissue remodeling, and repair-related signaling pathways. The peptide's ability to interact with multiple biological systems has made it a valuable subject of study within regenerative medicine. A unique aspect of GHK-Cu research involves its effects on gene expression. Scientific investigations have reported that the peptide may influence the activity of numerous genes associated with inflammation, tissue repair, antioxidant defense systems, and cellular maintenance. This broad regulatory activity continues to be an important focus of ongoing research. Additional studies have explored GHK-Cu's relationship with stem cell biology, oxidative stress regulation, vascular function, and healthy aging. As scientific understanding of regenerative pathways continues to evolve, GHK-Cu remains one of the most widely studied peptides within the fields of tissue regeneration and cellular health. Further research is necessary to fully characterize the biological mechanisms, safety profile, and broader applications of GHK-Cu within biomedical science.
Key areas of research:
- Regenerative Medicine Research
- Collagen Research
- Skin Biology Research
- Wound Healing Models
- Extracellular Matrix Research
- Cellular Signaling Research
- Gene Expression Research
- Healthy Aging Research
- Angiogenesis Research
- Stem Cell Research
References
- The Human Tripeptide GHK and Tissue Remodeling Research
- Copper Peptide Research and Skin Regeneration
- GHK-Cu and Stem Cell Signaling Research
References are provided for research context only and do not constitute medical claims. GHKC-u is sold for laboratory research use only.
Our Process
Lab-made.
Batch-tested.

Step 1
Precision Lyophilization
Manufactured in a controlled U.S. facility under strict compounding standards.

Step 2
Verified Purity
Every batch third-party tested with HPLC and mass spectrometry.

Step 3
Same-Day Fulfillment
Orders dispatched same-day from our U.S. facility.
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