Skip to content

Research

Published findings, in context.

Each finding is shown with the evidence level at which it was observed. A result in an animal model or in cell culture is not a result in humans.

More filters (study type, organism, year)
Publication year

5 publications

Compounds filed under Dermal fibroblasts · In vitro

  • In vitroIn vitro study· Homo sapiens (lung tissue and primary lung fibroblasts)

    Human lung tissue gene-expression profiling, a Connectivity Map query and cultured lung fibroblasts exposed to GHK

    “A gene expression signature of emphysema-related lung destruction and its reversal by the tripeptide GHK”

    Campbell JD, McDonough JE, Zeskind JE, et al.Genome Medicine2012PMID 22937864 (opens PubMed in a new tab)DOI 10.1186/gm367 (opens the publisher record in a new tab)

    Filed under GHK-Cu

    Model
    Gene-expression profiling of 64 lung tissue samples from 8 lungs of smokers with COPD; computational query of the Connectivity Map; in vitro exposure of lung fibroblasts from individuals with COPD and from former smokers without COPD to the GHK tripeptide (without copper)
    Exposure
    GHK tripeptide vs unexposed lung fibroblast cultures
    Comparator
    Unexposed fibroblasts; TGF-β as positive control

    The authors identified 127 genes associated with regional emphysema severity. Using the Connectivity Map, GHK was identified as a compound predicted to reverse that gene signature and to induce patterns consistent with activation of the TGF-β pathway. In human fibroblasts, GHK reproduced TGF-β-induced expression patterns, organized the actin cytoskeleton, increased integrin β1 and restored the capacity of fibroblasts derived from COPD lungs to contract and remodel a three-dimensional gel in culture. The authors emphasized the need for further studies on the mechanism and on COPD progression.

  • In vitroIn vitro study· cultured dermal fibroblasts

    Dermal fibroblast cultures: MMP-2, TIMP-1 and TIMP-2 with GHK-Cu, copper ions and copper-free GHK

    Life Sciences2000PMID 11045606 (opens PubMed in a new tab)Full record on PubMedDOI 10.1016/s0024-3205(00)00803-1 (opens the publisher record in a new tab)

    Filed under GHK-Cu

    Model
    Dermal fibroblast cultures; measurement of MMP-2, TIMP-1 and TIMP-2 in conditioned media
    Exposure
    GHK-Cu vs copper ions alone vs copper-free GHK tripeptide
    Comparator
    Control cultures; copper-free GHK; copper ions alone

    GHK-Cu increased MMP-2 levels and MMP-2 mRNA in cultured fibroblasts and increased the secretion of TIMP-1 and TIMP-2. The effect on MMP-2 was reproduced by copper ions but not by the copper-free GHK tripeptide, pointing to a substantial contribution of the metal to the observed activity.

  • In vitroIn vitro study· cultured normal human fibroblasts

    Normal human fibroblast cultures: synthesis of sulfated glycosaminoglycans and hyaluronic acid

    “Stimulation of sulfated glycosaminoglycan synthesis by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+”

    Wegrowski Y, Maquart FX, Borel JPLife Sciences1992PMID 1522753 (opens PubMed in a new tab)DOI 10.1016/0024-3205(92)90504-i (opens the publisher record in a new tab)

    Filed under GHK-Cu

    Model
    Normal human fibroblast cultures; labeling with tritiated glucosamine and 35S-sulfate to quantify glycosaminoglycans
    Exposure
    GHK-Cu vs no-GHK-Cu culture
    Comparator
    Control cultures without GHK-Cu

    GHK-Cu induced a biphasic, concentration-dependent increase in total glycosaminoglycan synthesis, with a maximum in the nanomolar range; at higher concentrations, synthesis returned to control levels. It preferentially increased the synthesis of extracellular dermatan sulfate and cell-layer-associated heparan sulfate, without affecting hyaluronic acid synthesis.

  • In vitroIn vitro study· cultured fibroblasts

    Fibroblast cultures: protein synthesis and cell number across GHK-Cu concentrations

    Maquart FX, Pickart L, Laurent M, et al.FEBS Letters1988PMID 3169264 (opens PubMed in a new tab)Title on PubMedDOI 10.1016/0014-5793(88)80509-x (opens the publisher record in a new tab)

    Filed under GHK-Cu

    Model
    Fibroblast cultures exposed to a range of GHK-Cu concentrations; measurement of protein synthesis and cell number
    Exposure
    GHK-Cu vs no-GHK-Cu culture
    Comparator
    Control cultures without GHK-Cu

    Protein synthesis by cultured fibroblasts was measured across a range of GHK-Cu concentrations, from picomolar to nanomolar, together with cell number, which did not change. The protein measured and the direction of the result are described in the original record. The authors noted that the Gly-His-Lys sequence occurs in the α2(I) chain of type I procollagen and proposed it as a possible physiological origin of the peptide.

  • In vitroIn vitro study· cultured normal and neoplastic liver cells

    Normal and neoplastic liver cells in culture: survival and growth with a tripeptide from human serum

    Pickart L, Thaler MMNature New Biology1973PMID 4349963 (opens PubMed in a new tab)Title on PubMed

    Filed under GHK-Cu

    Model
    Normal and neoplastic liver cells in culture exposed to a tripeptide from human serum; design details are not available in the indexed record
    Exposure
    Tripeptide from human serum

    Discovery work for the GHK tripeptide. The authors described a tripeptide in human serum that prolonged the survival of normal liver cells in culture and increased the growth of neoplastic liver cells. PubMed has no abstract for this record, so the cell source, design and quantitative details could not be verified.

For laboratory research use only. Not for human or veterinary use or consumption. Not for diagnostic use. Not evaluated by the U.S. FDA.