GHK-Cu 50mg Pre-Filled Pen – High-Purity Research Peptide
GHK-Cu 50mg Pre-Filled Pen – High-Purity Research Peptide
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GHK-Cu 50mg Pre-Filled Pen – High-Purity Research Peptide
GHK-Cu (Copper Tripeptide-1) is a naturally occurring peptide complex studied in controlled laboratory environments for its interaction with cellular repair, regenerative signalling and tissue-remodelling pathways. This presentation is supplied as a pre-filled research pen containing 50mg of GHK-Cu, providing a convenient and consistent format for laboratory applications.
Manufactured under strict quality standards, each batch undergoes rigorous quality control procedures and is accompanied by a full Certificate of Analysis (COA) to ensure transparency, consistency and reproducibility across research settings.
Elevr supplies GHK-Cu strictly as a research-grade peptide.
What is GHK-Cu?
GHK-Cu (Copper Tripeptide-1) is a naturally occurring copper-binding tripeptide first identified in human plasma. In preclinical and laboratory research, it has been explored for its involvement in cellular regeneration, extracellular matrix remodelling, inflammatory signalling and gene expression pathways associated with tissue repair.
Due to its copper content, GHK-Cu solutions may naturally exhibit varying shades of blue. This is a normal characteristic and does not affect product quality or consistency.
What’s Included?
Each GHK-Cu 50mg Pre-Filled Pen kit contains:
- 1 × Pre-Filled Injection Pen containing 50mg GHK-Cu
- 1 × Cartridge Pen
- 10 × Pen Needle Tips
- 1 × Protective Pen Carry Case
Usage & Storage
GHK-Cu is supplied as a pre-filled research pen for convenient handling within laboratory environments. Store refrigerated at 2–8°C and protect from direct sunlight, excessive heat and freezing conditions. Keep the pen securely capped when not in use to maintain product stability and integrity.
For laboratory research use only. Not for human consumption.
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Research Benefits
Preclinical and laboratory investigations have explored GHK-Cu in relation to several biological pathways, including:
Cellular Regeneration Research
Studied for its interaction with cellular repair mechanisms and tissue-remodelling pathways.
Collagen & Extracellular Matrix Studies
Explored for its influence on collagen production, elastin synthesis and extracellular matrix regulation.
Inflammatory Signalling Research
Investigated for its role in pathways associated with inflammatory responses and cellular stress regulation.
Hair Follicle & Scalp Research
Studied in laboratory models examining follicular activity, scalp biology and tissue regeneration pathways.
Gene Expression Research
Explored for its interaction with genes involved in cellular maintenance, repair and regenerative processes.
Tissue Repair & Wound Healing Models
Examined in preclinical studies investigating regenerative signalling and tissue recovery pathways.
This product is supplied strictly for laboratory research purposes only. Not for human consumption.
