GHK-cu 100mg (Copper Tripeptide‑1)

£42.99
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5.0

Premium Grade | UK Supply | Research Peptide | COA Certified | >99% Purity | Worldwide Delivery

(Copper Tripeptide‑1)

Brief Summery

GHK-Cu is a copper binding peptide studied in laboratory settings for its role in cellular signalling, collagen related pathway analysis, and tissue response research. Researchers examine it to understand peptide copper interactions, matrix related biochemical activity, and broader sequence specific signalling mechanisms under controlled conditions. Within scientific research, GHK-Cu is used in in vitro and preclinical models focused on pathway observation, marker evaluation, and comparative peptide analysis. Its relevance centres on structured investigation of peptide mediated cellular processes, making it a useful compound for research environments requiring precise handling, documented study design, and clear scientific presentation.

 

Product Overview

GHK-Cu is a naturally occurring copper binding tripeptide composed of glycine, histidine, and lysine, complexed with a bioavailable copper ion. It is widely recognised in scientific literature for its role in cellular signalling, tissue remodelling, and biochemical regulation at the cellular and extracellular matrix level. Due to its endogenous origin and multifunctional activity, GHK-cu has become one of the most extensively researched peptides in regenerative and biochemical science. In research and laboratory environments, it is primarily studied for its involvement in cellular communication pathways related to tissue integrity, matrix organisation, and copper dependent enzymatic activity. Its ability to influence multiple biological systems simultaneously makes it a highly valuable compound for advanced peptide research, particularly in studies examining cellular repair signalling and molecular regeneration processes. GHK-Cu’s broad spectrum of documented biological interactions, combined with its stability and well characterised molecular structure, has positioned it as a cornerstone peptide in modern biochemical and regenerative research.
(Recommend, Reconstitute with-Acetic Acid)


Scientific Background

GHK-cu was originally identified in human plasma and later found in saliva and urine, indicating its role as a naturally occurring signalling molecule. The peptide functions primarily by delivering copper ions to specific cellular targets, where copper acts as an essential cofactor for numerous enzymatic reactions involved in tissue maintenance, antioxidant defence, and cellular metabolism. At the molecular level, GHK-cu has been shown to modulate gene expression related to collagen synthesis, elastin production, proteoglycan formation, and extracellular matrix remodelling. Additionally, it influences metalloproteinase activity and copper-dependent enzymes such as superoxide dismutase, which are critical for oxidative stress regulation and cellular protection. These combined actions allow researchers to study complex regenerative signalling networks using a single peptide compound. GHK-cu also demonstrates high affinity binding to damaged tissue components, which has led to extensive investigation into its role in cellular repair signalling and tissue remodelling cascades. This multifaceted biochemical behaviour distinguishes GHK-cu from many synthetic peptides and underscores its importance in peptide science.

 

Research Applications

GHK-cu is extensively researched across multiple scientific disciplines, including regenerative biology, molecular biochemistry, dermatological science, and tissue engineering. Researchers utilise GHK-cu to investigate cellular repair signalling, extracellular matrix regeneration, and copper-mediated enzymatic pathways under controlled experimental conditions. In molecular and cellular research, its is employed to study gene expression regulation, antioxidant defence mechanisms, and inflammatory signalling modulation. Its ability to influence a wide range of cellular processes makes it particularly useful for investigating coordinated tissue regeneration and cellular communication systems. Additionally, GHK-cu is widely studied in advanced material and biomolecular research focused on wound environment modelling, tissue scaffolding interactions, and regenerative signalling optimisation. Its extensive scientific documentation, endogenous nature, and multifunctional biochemical activity make it one of the most significant and versatile peptides in modern research applications.
Read more about GHK-Cu in our research article ⟶

 

Technical Specifications

  • Contents: 100mg GHK-cu
  • Form: Lyophilized powder
  • Purity: 99% (HPLC Verified)
  • Molecular Formula: C₁₄H₂₂CuN₆O₄
  • Sequence: Glycyl-Histidyl-Lysine (GHK) bound to Cu²⁺
  • Peptide Length: 3 amino acids (tripeptide)
  • pH Range: 5.0-7.0
  • Storage: Store between 2°C and 8°C

Note: Reconstitute with Bacteriostatic (BAC) water for best results.


Related Research Compounds

KVP 10mg
Glow 70mg
BPC-157 10mg

 

Disclaimer

For research purposes only, Not for human consumption.

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Product Information

Specifications, shipping & research guidelines

Laboratory Research Use

This product is supplied for laboratory research and analytical purposes only, supporting structured investigation within controlled scientific environments.

Product Specifications


Form: Lyophilised powder
Purity: >99% (HPLC Verified)
Storage: 2°C to 8°C

Shipping Information


UK 24hr shipping Worldwide 48hr Shipping via DHL Express. Orders are dispatched Monday to Thursday using tracked delivery services.