Research Article

GHK-Cu may Prevent Oxidative Stress in Skin by Regulating Copper and Modifying Expression of Numerous Antioxidant Genes

A review compiling preclinical data that GHK‑Cu stimulates ECM production, angiogenesis and antioxidant defenses in skin and other tissues, and that it modulates gene networks linked to repair.

Study context

Study design
Review of laboratory (in vitro) and animal literature; gene‑expression analyses cited.
Population or model
In vitro human cell lines and animal models (as surveyed in review).
Reported outcomes
Modulation of antioxidant and repair‑related gene expression · Stimulation of collagen and proteoglycan production in preclinical studies

Research question

What are the mechanisms by which GHK‑Cu may protect skin from oxidative stress and support tissue repair?

Key findings in the source

GHK‑Cu associates with upregulation of genes related to antioxidant systems and ECM synthesis in preclinical studies; evidence supports antioxidant and regenerative potential in vitro and in animals.

Limitations

Primarily preclinical data; translation to human clinical benefit not established in the supplied record.

Original source

GHK-Cu may Prevent Oxidative Stress in Skin by Regulating Copper and Modifying Expression of Numerous Antioxidant Genes

Loren Pickart, Jessica Vasquez-Soltero, Anna Margolina · Cosmetics · 2015

Source abstract

The copper binding tripeptide GHK (glycyl-l-histidyl-l-lysine) is a naturally occurring plasma peptide that significantly declines during human aging. It has been established that GHK:Copper(2+) improves wound healing and tissue regeneration and stimulates collagen and decorin production. GHK-Cu also supports angiogenesis and nerve outgrowth, improves the condition of aging skin and hair, and possesses antioxidant and anti-inflammatory effects. In addition, it increases cellular stemness and secretion of trophic factors by mesenchymal stem cells. GHK’s antioxidant actions have been demonstrated in vitro and in animal studies. They include blocking the formation of reactive oxygen and carbonyl species, detoxifying toxic products of lipid peroxidation such as acrolein, protecting keratinocytes from lethal Ultraviolet B (UVB) radiation, and blocking hepatic damage by dichloromethane radicals. In recent studies, GHK has been found to switch gene expression from a diseased state to a healthier state for certain cancers and for chronic obstructive pulmonary disease (COPD). The Broad Institute’s Connectivity Map indicated that GHK induces a 50% or greater change of expression in 31.2% of human genes. This paper reviews biological data demonstrating positive effects of GHK in skin and proposes interaction with antioxidant-related genes as a possible explanation of its antioxidant activity.

Open source record

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