GHK-Cu BioStrips
GHK-Cu BioStrips view 1
GHK-Cu BioStrips view 2
Peptide Capsules
Verified Quality

GHK-Cu BioStrips

4.88 (34 Reviews)
Ships worldwide
$199.97

Sales Tax included at checkout

Laboratory Research Chemical • Scroll down for full specifications

1

Priority Shipping

Fast & Discreet

99% Purity

HPLC Verified

Full Refund

60-Day Promise

Lab Synthesis

GMP Certified

Product Information

Detailed laboratory specifications, compound structure, and research applications.

Research Grade

HPLC 99%+ Purity

Verified Origin

GMP Manufactured

Product Information

Package contains 20 peptide buccal strips for in vitro research applications, each strip containing GHK-Cu (3 mg).

GHK-Cu is studied for its potential roles in wound healing, tissue repair, and anti-inflammatory processes due to its ability to modulate gene expression, stimulate collagen and glycosaminoglycan synthesis, and exhibit antioxidant properties. It also influences cellular processes like angiogenesis and tissue remodeling. Research primarily focuses on its biochemical mechanisms in various biological systems.

Peptide Specifications

Property Value
Peptide Sequence Gly-His-Lys (complexed with Cu²⁺)
Molecular Formula C₁₄H₂₄CuN₆O₄
Molecular Weight 401.9 g/mol
CAS Number 89030-95-5
PubChem CID 378611

GHK-Cu Research

GHK-Cu is a copper peptide complex that combines the tripeptide GHK (Glycine-Histidine-Lysine) with a copper ion. It occurs naturally in human plasma, with levels that decline with age. This compound has gained attention for several biological properties:

  • Wound healing and tissue regeneration
  • Stimulation of collagen production
  • Anti-inflammatory effects
  • Antioxidant properties
  • Promotion of blood vessel formation

Due to these properties, GHK-Cu is used in:

  • Skincare products, particularly anti-aging formulations
  • Hair growth treatments
  • Wound healing applications

Research suggests it works by activating specific genes related to healing and attracting immune cells to injury sites.

Skin Health and Tissue Repair

GHK-Cu is widely used in cosmetic products due to its anti-aging properties. It improves skin elasticity, firmness, and reduces fine lines, wrinkles, and photodamage1. Studies have demonstrated that GHK-Cu can tighten loose skin, enhance skin density, and reduce hyperpigmentation2. Its ability to inhibit elastase activity further supports the structural integrity of the skin by reducing elastin degeneration3.

GHK-Cu is a potent wound healing agent, promoting angiogenesis, cell proliferation, and the synthesis of growth factors such as vascular endothelial growth factor (VEGF) and fibroblast growth factor-2 (FGF-2). In vivo studies have shown that GHK-Cu accelerates wound healing in various models, including scald wounds in mice, by enhancing angiogenesis and shortening healing time4. The peptide’s ability to stimulate connective tissue accumulation and collagen synthesis has been demonstrated in experimental wound models5.

Pulmonary Conditions

GHK-Cu has shown promising results in the treatment of bleomycin-induced pulmonary fibrosis, a model for idiopathic pulmonary fibrosis (IPF).

Studies indicate that GHK-Cu can inhibit inflammatory and fibrotic changes by reducing inflammatory cytokines such as TNF-α and IL-6, and by decreasing collagen deposition in lung tissues. It also helps in reversing the imbalance of matrix metalloproteinases (MMP-9) and their inhibitors (TIMP-1), and in preventing epithelial-mesenchymal transition (EMT) through the modulation of Nrf2, NF-κB, and TGF-β1/Smad2/3 signaling pathways6.

In the context of COPD, GHK-Cu has been found to attenuate cigarette smoke-induced pulmonary emphysema and inflammation. It achieves this by reducing oxidative stress and inflammation, as evidenced by decreased levels of inflammatory cytokines and oxidative markers in lung tissues. GHK-Cu also restores antioxidant defenses by upregulating Nrf2 expression, which is crucial for combating oxidative damage in COPD7.

GHK-Cu has also been studied in models of acute lung injury (ALI), where it demonstrates protective effects by reducing reactive oxygen species (ROS) production and increasing antioxidant enzyme activity. It suppresses inflammatory responses by inhibiting NF-κB and p38 MAPK signaling pathways, reducing lung tissue damage and inflammatory cell infiltration8.

Neurodegenerative Disorders

One of the critical pathological features of neurodegenerative disorders is protein misfolding and aggregation. GHK-Cu has been shown to prevent copper- and zinc-induced protein aggregation, thereby protecting central nervous system cells from metal-induced toxicity. This property is particularly relevant in conditions like Alzheimer’s disease, where metal ion imbalance contributes to disease progression9.

Studies have demonstrated that GHK-Cu can enhance cognitive performance and provide neuroprotection. In animal models, intranasal administration of GHK-Cu improved cognitive functions, reduced amyloid plaques, and decreased inflammation in the brain, suggesting its potential as a therapeutic agent for Alzheimer’s disease and age-related cognitive decline10.

GHK-Cu influences gene expression patterns that are crucial for maintaining nervous system health. It has been shown to reset pathological gene expression to healthier states, which may counteract age-related dysregulation of biochemical pathways and support neuronal survival and function11.

Antibacterial Properties

GHK-Cu nanoparticles (GHK-Cu NPs) have been shown to possess significant antibacterial properties. In a study focusing on their application in wound healing, GHK-Cu NPs demonstrated effective antibacterial activity against common bacterial strains such as E. coli and S. aureus12.

The self-assembled nature of these nanoparticles not only addresses the instability issues of GHK-Cu in biological fluids but also enhances their antibacterial efficacy. This makes them a promising candidate for biomedical applications, particularly in wound healing where infection control is crucial.

Anti-Cancer Activities and Gene Expression Modulation

GHK-Cu exhibits multiple anti-cancer activities. It has been shown to modulate gene expression in cancer cells, such as MCF7 breast cancer cells and PC3 prostate cancer cells. This modulation can reverse the pathological expression of genes associated with cancer progression, thereby potentially restoring tissue integrity and health13.

Recent studies have highlighted GHK-Cu’s ability to influence gene expression significantly. It can reverse the pathological expression of a substantial percentage of genes in metastasis-prone colon cancer, indicating its potential to alter the course of cancer development. This gene modulation capability extends to shifting gene expression in COPD lungs from a destructive state to one of healthy remodeling, showcasing its broad therapeutic potential13.

References

  1. Pickart, L. (2008). The human tri-peptide GHK and tissue remodeling. Journal of Biomaterials Science, Polymer Edition, 19, 969 – 988. https://doi.org/10.1163/156856208784909435.
  2. Pickart, L., Vasquez-Soltero, J., & Margolina, A. (2015). GHK Peptide as a Natural Modulator of Multiple Cellular Pathways in Skin Regeneration. BioMed Research International, 2015. https://doi.org/10.1155/2015/648108.
  3. Dymek, M., Olechowska, K., Hąc-Wydro, K., & Sikora, E. (2023). Liposomes as Carriers of GHK-Cu Tripeptide for Cosmetic Application. Pharmaceutics, 15. https://doi.org/10.3390/pharmaceutics15102485.
  4. Wang, X., Liu, B., Xu, Q., Sun, H., Shi, M., Wang, D., Guo, M., Yu, J., Zhao, C., & Feng, B. (2017). GHK‐Cu‐liposomes accelerate scald wound healing in mice by promoting cell proliferation and angiogenesis. Wound Repair and Regeneration, 25. https://doi.org/10.1111/wrr.12520.
  5. Maquart, F., Bellon, G., Chaqour, B., Wegrowski, J., Patt, L., Trachy, R., Monboisse, J., Chastang, F., Birembaut, P., & Gillery, P. (1993). In vivo stimulation of connective tissue accumulation by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+ in rat experimental wounds.. The Journal of clinical investigation, 92 5, 2368-76 . https://doi.org/10.1172/JCI116842.
  6. Hou, G., & Zhou, X. (2018). Antioxidant and anti-inflammation effect of GHK-Cu in bleomycin-induced pulmonary fibrosis. ILD/DPLD of known originhttps://doi.org/10.1183/13993003.CONGRESS-2018.PA2957.
  7. Zhang, Q., Yan, L., Lu, J., & Zhou, X. (2022). Glycyl-L-histidyl-L-lysine-Cu2+ attenuates cigarette smoke-induced pulmonary emphysema and inflammation by reducing oxidative stress pathway. Frontiers in Molecular Biosciences, 9. https://doi.org/10.3389/fmolb.2022.925700.
  8. Park, J., Lee, H., Kim, S., & Yang, S. (2016). The tri-peptide GHK-Cu complex ameliorates lipopolysaccharide-induced acute lung injury in mice. Oncotarget, 7, 58405 – 58417. https://doi.org/10.18632/oncotarget.11168.
  9. Min, J., Sarlus, H., & Harris, R. (2024). Glycyl-l-histidyl-l-lysine prevents copper- and zinc-induced protein aggregation and central nervous system cell death in vitro. Metallomics: Integrated Biometal Science, 16. https://doi.org/10.1093/mtomcs/mfae019.
  10. Tucker, M., Liao, G., Park, J., Rosenfeld, M., Wezeman, J., Mangalindan, R., Ratner, D., Darvas, M., & Ladiges, W. (2023). Behavioral and neuropathological features of Alzheimer’s disease are attenuated in 5xFAD mice treated with intranasal GHK peptide. bioRxivhttps://doi.org/10.1101/2023.11.20.567908.
  11. Pickart, L., Vasquez-Soltero, J., & Margolina, A. (2017). The Effect of the Human Peptide GHK on Gene Expression Relevant to Nervous System Function and Cognitive Decline. Brain Sciences, 7. https://doi.org/10.3390/brainsci7020020.
  12. Sun, L., Li, A., Hu, Y., Li, Y., Shang, L., & Zhang, L. (2019). Self‐Assembled Fluorescent and Antibacterial GHK‐Cu Nanoparticles for Wound Healing Applications. Particle & Particle Systems Characterization, 36. https://doi.org/10.1002/ppsc.201800420.
  13. Pickart, L., Biology, F., & Margolina, A. (2021). Modulation of Gene Expression in Human Breast Cancer MCF7 and Prostate Cancer PC3 Cells by the Human Copper-Binding Peptide GHK-Cu.. , 05, 1-1. https://doi.org/10.21926/OBM.GENET.2102128.

Research Chemical Disclaimer

This product is intended for laboratory research use only. It is not for human consumption, diagnostic, or therapeutic purposes. Handling should only be performed by qualified professionals.

Complete Your Research

Synergistic compounds from the Peptide Capsules lineup

View Full Collection
MicroFLGR (2MG)

MicroFLGR (2MG)

Product Description

Follistatin (FLGR242), is a novel fragmented, modified version of Follistatin-344 (FST-344) that does not bind to the protein activin. Activin is responsible for the negative effects of myostatin inhibition such as unwanted cellular growth in laboratory models. It also contains a patented albumin binder.

Follistatin protein (FST) fused with an albumin-binding construct that uses a hydrophilic glycine-serine linker to achieve high-affinity binding to serum albumin (<20 nM Kd). This recombinant technology allows researchers to study follistatin-albumin interactions and protein trafficking in experimental systems.

Research applications include muscle mass development studies, activin neutralization assays, and TGF-β superfamily pathway modulation with albumin binding dynamics. The construct maintains biological activity while enabling investigation of albumin as a carrier protein.

US GMP-manufactured with third-party verification and comprehensive COAs for reproducible research outcomes.

Peptide Information

Property Value
Peptide Type Follistatin-Albumin Binding Construct
Technology Albumin-binding peptide fusion (GGSGGSGGSGGRLIEDICLPRWGCLWEDD linker)
Molecular Weight ~40 kDa
Binding Affinity <20 nM
Synonyms FST-Albumin Construct, Extended Half-Life Follistatin

Lyophilized Peptides:

These peptides are freeze-dried, a process that not only extends shelf life but also preserves the purity and integrity of the peptides during storage. We do not use any fillers in this process.

Product Usage:

This PRODUCT IS INTENDED AS A RESEARCH CHEMICAL ONLY. This designation allows the use of research chemicals strictly for in vitro testing and laboratory experimentation only. All product information available on this website is for educational purposes only.  This product should only be handled by licensed, qualified professionals. This product is not a drug, food, or cosmetic and may not be misbranded, misused or mislabeled as a drug.

$15000.00

Follistatin (FLGR242) (10mg)
Options

Follistatin (FLGR242) (10mg)

Product Description

Follistatin (FLGR242), is a novel fragmented, modified version of Follistatin-344 (FST-344) that does not bind to the protein activin. Activin is responsible for the negative effects of myostatin inhibition such as unwanted cellular growth in laboratory models. It also contains a patented albumin binder.

Follistatin protein (FST) fused with an albumin-binding construct that uses a hydrophilic glycine-serine linker to achieve high-affinity binding to serum albumin (<20 nM Kd). This recombinant technology allows researchers to study follistatin-albumin interactions and protein trafficking in experimental systems.

Research applications include muscle mass development studies, activin neutralization assays, and TGF-β superfamily pathway modulation with albumin binding dynamics. The construct maintains biological activity while enabling investigation of albumin as a carrier protein.

US GMP-manufactured with third-party verification and comprehensive COAs for reproducible research outcomes.

Peptide Information

Property Value
Peptide Type Follistatin-Albumin Binding Construct
Technology Albumin-binding peptide fusion (GGSGGSGGSGGRLIEDICLPRWGCLWEDD linker)
Molecular Weight ~40 kDa
Binding Affinity <20 nM
Synonyms FST-Albumin Construct, Extended Half-Life Follistatin

Lyophilized Peptides:

These peptides are freeze-dried, a process that not only extends shelf life but also preserves the purity and integrity of the peptides during storage. We do not use any fillers in this process.

Product Usage:

This PRODUCT IS INTENDED AS A RESEARCH CHEMICAL ONLY. This designation allows the use of research chemicals strictly for in vitro testing and laboratory experimentation only. All product information available on this website is for educational purposes only.  This product should only be handled by licensed, qualified professionals. This product is not a drug, food, or cosmetic and may not be misbranded, misused or mislabeled as a drug.

$2397 – $28764

Klotho (alphaKlothoLR) (20mcg)
Options

Klotho (alphaKlothoLR) (20mcg)

Product Description

alphaKlothoLR is a patented, long-release version of the recombinant Klotho protein, which contains specific amino acid sequences, linkers, and an albumin binding group that allows for a sustained delivery of Klotho with cellular activity up to 19 days.

This research-grade construct combines α-Klotho protein with a proprietary 29-amino acid albumin binding peptide (GGSGGSGGSGGRLIEDICLPRWGCLWEDD). The modification enables strong albumin binding affinity (<20 nM) while maintaining native FGF23 binding activity (15-30 nM).

Produced through recombinant expression with rigorous third-party testing. Each batch includes HPLC and LC-MS verification to confirm molecular identity and purity standards. Complete analytical documentation supports laboratory applications investigating protein-albumin interactions, FGF23 signaling pathways, and albumin binding mechanisms.

For in vitro research use only.

Klotho Protein Information

Property Value
Peptide Sequence α-Klotho protein (1012 amino acids) + albumin binding construct: GGSGGSGGSGGRLIEDICLPRWGCLWEDD
Molecular Weight ~133-135 kDa (full construct with albumin binder)
Albumin Binding Affinity (Kd) <20 nM
FGF23 Binding Affinity (Kd) 15-30 nM (optimized: 16.2 nM)
Synonyms α-Klotho-albumin binding construct, Modified Klotho with glycine-serine linker

Lyophilized Peptides:

These peptides are freeze-dried, a process that not only extends shelf life but also preserves the purity and integrity of the peptides during storage. We do not use any fillers in this process.

Product Usage:

This PRODUCT IS INTENDED AS A RESEARCH CHEMICAL ONLY. This designation allows the use of research chemicals strictly for in vitro testing and laboratory experimentation only. All product information available on this website is for educational purposes only.  This product should only be handled by licensed, qualified professionals. This product is not a drug, food, or cosmetic and may not be misbranded, misused or mislabeled as a drug.

$2397 – $15341

Research Specification

Comprehensive documentation for laboratory application and compound verification.

HPLC Verification

Purity levels exceeding 99.2% guaranteed via third-party high-performance liquid chromatography testing.

Storage Compliance

Stored at -20°C in oxygen-free environment. Shipped with cold-chain monitoring protocols.

CAS Registry

Uniquely identified compound with full structural validation and mass spectrometry reports.

Usage Policy

Strictly for lab research. Not for human or therapeutic use. Waiver required for bulk orders.