
GHK-CU 50mg
All Tests PassLab: Freedom Diagnostics
In Stock
Best Seller
GHK-CU
50mg|Freedom Diagnostics
COA with every batch
Limited Quantity
Copper Coordination & Matrix Remodeling
GHK-Cu is a focus for researchers studying copper-peptide biology. The tripeptide binds copper ions with high affinity, providing a model for examining how copper delivery influences extracellular matrix dynamics. Studies use GHK-Cu to investigate the regulation of collagen and elastin synthesis alongside the activity of matrix metalloproteinases in dermal and connective-tissue models.
Antioxidant & Tissue Repair Signaling
In regenerative research, GHK-Cu is investigated for its antioxidant and reparative signaling. Researchers study how the copper complex modulates oxidative stress responses and influences fibroblast activity, examining its role in wound-healing and tissue-remodeling frameworks in cellular models.
Gene Expression & Cellular Behavior
Recent studies have utilized GHK-Cu to investigate its influence on gene expression patterns associated with repair and regeneration. By examining shifts in genes governing matrix production and cellular signaling, researchers explore the peptide's broad role in tissue maintenance.
For research use only.
GHK-Cu is a synthetic copper-binding tripeptide widely studied for its role in extracellular matrix remodeling, tissue repair, and regenerative research.
Yes. GHK-Cu is a copper-binding tripeptide commonly investigated in preclinical research involving connective tissue biology, antioxidant activity, and cellular regeneration.
GHK-Cu is commonly investigated in studies involving collagen and elastin synthesis, extracellular matrix remodeling, fibroblast activity, antioxidant signaling, wound healing, tissue maintenance, and gene expression related to repair and regeneration.
GHK-Cu should be stored in a cool, dry environment. For long-term stability, lyophilized vials are typically kept frozen and protected from heat, moisture, and direct sunlight.
GHK-Cu is unique for its ability to bind copper ions with high affinity, making it a valuable research peptide for studying extracellular matrix regulation, antioxidant signaling, collagen synthesis, and gene expression involved in tissue repair and regeneration.
Overview
Copper Coordination & Matrix Remodeling
GHK-Cu is a focus for researchers studying copper-peptide biology. The tripeptide binds copper ions with high affinity, providing a model for examining how copper delivery influences extracellular matrix dynamics. Studies use GHK-Cu to investigate the regulation of collagen and elastin synthesis alongside the activity of matrix metalloproteinases in dermal and connective-tissue models.
Antioxidant & Tissue Repair Signaling
In regenerative research, GHK-Cu is investigated for its antioxidant and reparative signaling. Researchers study how the copper complex modulates oxidative stress responses and influences fibroblast activity, examining its role in wound-healing and tissue-remodeling frameworks in cellular models.
Gene Expression & Cellular Behavior
Recent studies have utilized GHK-Cu to investigate its influence on gene expression patterns associated with repair and regeneration. By examining shifts in genes governing matrix production and cellular signaling, researchers explore the peptide's broad role in tissue maintenance.
For research use only.
Trusted by 150+ Customers






60-day money-back guaranteeon every order














