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The Regenerative Potential of GHK-Cu in Aesthetic Medicine
Jonathan Mokhtar1, Basel Mohamad2, Jewel Haddad1
1College of Medicine, Mohammed Bin Rashid University of Medicine and Health Sciences, College of Medicine, Dubai Health, Dubai, United Arab Emirates.
Abstract:
The age-related decline in tissue regenerative capacity drives demand for interventions restoring physiological repair mechanisms. Glycyl-L-histidyl-L-lysine-copper (GHK-Cu) has demonstrated significant regenerative, anti-inflammatory, and antioxidant properties in preclinical models, prompting its increasing integration into aesthetic practice despite a paucity of standardized clinical guidelines. This systematic review evaluates the efficacy, safety, and regenerative mechanisms of GHK-Cu in aesthetic medicine to clarify its clinical utility and inform future research. A systematic search of PubMed, Embase, and Cochrane CENTRAL was conducted from database inception through March 2026, following PRISMA guidelines. Eligible studies included clinical and preclinical models investigating GHK-Cu as a standalone intervention for aesthetic applications. 20 studies (18 preclinical; 2 RCTs) were included. Preclinical data consistently demonstrated that GHK-Cu enhances extracellular matrix synthesis (type I collagen and glycosaminoglycans), modulates metalloproteinase activity, and promotes angiogenesis and cellular proliferation. It also exhibited significant anti-inflammatory effects by suppressing TGF-β and IL-6. Clinically, GHK-Cu improved patient-reported satisfaction after laser resurfacing and significantly reduced wrinkle volume and depth compared with controls. Additionally, advanced delivery systems, including microneedles and liposomes, markedly improved its transdermal bioavailability and efficacy. GHK-Cu demonstrates a reasonable biological basis for use as a regenerative agent in aesthetic medicine, supported by available preclinical data. Nevertheless, the findings reported across studies were constrained by methodological variability and a limited number of well-designed clinical trials. Future research incorporating larger, controlled trials with standardized formulations, dosing regimens, and delivery methods will be necessary to close the translational gap and inform the development of consistent therapeutic protocols in clinical practice.
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