Mechanisms of Action GHK-Cu interacts with multiple biological systems: Gene Modulation Regulates expression of over 4,000 genes Activates genes related to collagen production , antioxidant defense , and DNA repair Suppresses genes involved in inflammation , fibrosis , and tumor growth Tissue Remodeling Stimulates fibroblast activity for collagen and elastin synthesis Enhances wound contraction and angiogenesis Reduces scar formation Neuroprotective Effects Supports repair in nervous tissue Reduces oxidative stress in neurons Muscle and Connective Tissue Repair Increases glycosaminoglycan production Promotes myofibroblast differentiation If youre considering GHK-Cu as part of a recovery plan, structure matters
No acids, no enzymes, no chemical solvents
Use a 1:1 ratio (1ml water per 1mg peptide for research convenience), swirl gently until fully dissolved without shaking, then refrigerate immediately at 28C
Freedman SB, Stewart C, Rumantir M, Thull-Freedman JD: Predictors of clinically significant upper gastrointestinal hemorrhage among children with hematemesis
The copper ion in GHK-Cu participates in superoxide dismutase (SOD) activation and enzyme cofactor activity, making the complex more biologically active than uncomplexed GHK in most published models