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GHK-CU

Product information

$62.99

Product description

GHK-Cu is a naturally occurring peptide complex composed of glycyl-L-histidyl-L-lysine (GHK) and copper (Cu). This tripeptide is found in mammalian plasma, saliva, and urine, and plays a crucial role in wound healing, skin repair, and tissue regeneration. GHK-Cu has gained significant attention in the scientific community due to its potential therapeutic applications in various fields, including dermatology, regenerative medicine, and anti-aging research.

GHK-CU ()

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Product Usage: This product is intended solely for use as a research chemical in vitro and laboratory experimentation by licensed, qualified professionals. It is not approved for human or animal consumption. Misuse, misbranding, or mislabeling as a drug, food, or cosmetic is strictly prohibited. All information provided is for educational purposes only.

Table of Contents

  1. Characteristics
  2. How does GHK-Cu work?
  3. Benefits
  4. Side Effects
  5. Summary
  6. Certificate of Analysis (COA)
  7. References

Characteristics

Molecular Formula

C14H21N6O4

CAS

89030-95-5

Molar Mass

404.9 g/mol

Chemical Formula

C14H21CuN6O4

Amino Acid Sequence

Gly-His-Lys

Synonyms

Copper tripeptide-1, Copper-GHK, GHK-Cu, Copper peptide

Solubility

Water-soluble

Organoleptic Profile

Blue or white powder

Composition

Glycyl-L-histidyl-L-lysine complexed with copper (II) ions

How does GHK-Cu work?

GHK-Cu exerts its effects through multiple mechanisms of action. The peptide complex has been shown to stimulate collagen synthesis, promote angiogenesis (the formation of new blood vessels), and enhance the proliferation and survival of skin cells, such as fibroblasts and keratinocytes. GHK-Cu also exhibits antioxidant and anti-inflammatory properties, which contribute to its wound healing and tissue repair capabilities.

At the molecular level, GHK-Cu can modulate the expression of numerous genes involved in skin repair, extracellular matrix remodeling, and inflammation. The peptide complex has been found to upregulate the expression of matrix metalloproteinases (MMPs), which are enzymes responsible for the degradation of damaged collagen and elastin fibers, allowing for the deposition of new, healthy extracellular matrix components.

Furthermore, GHK-Cu has been shown to chelate copper ions, which are essential for the proper functioning of enzymes involved in collagen synthesis and cross-linking, such as lysyl oxidase. By delivering copper ions to the skin, GHK-Cu can enhance the activity of these enzymes, leading to improved skin firmness and elasticity.

Benefits

  • Skin rejuvenation: GHK-Cu has been extensively studied for its potential in skin rejuvenation and anti-aging applications. The peptide complex has been shown to stimulate collagen synthesis, improve skin elasticity, and reduce the appearance of fine lines and wrinkles.

  • Wound healing: GHK-Cu has demonstrated remarkable wound healing properties, promoting the closure of both acute and chronic wounds. The peptide complex stimulates the migration and proliferation of skin cells, enhances angiogenesis, and modulates inflammation, all of which contribute to faster and more efficient wound healing.

  • Antioxidant and anti-inflammatory effects: GHK-Cu exhibits potent antioxidant and anti-inflammatory properties, which can help protect the skin from oxidative stress and reduce inflammation associated with various skin conditions, such as acne, rosacea, and psoriasis.

  • Hair growth: Recent studies have suggested that GHK-Cu may promote hair growth and prevent hair loss. The peptide complex has been shown to stimulate the proliferation of hair follicle cells and prolong the anagen (growth) phase of the hair cycle.

  • Neuroprotection: GHK-Cu has been investigated for its potential neuroprotective effects, particularly in the context of neurodegenerative diseases such as Alzheimer's and Parkinson's. The peptide complex has been shown to reduce oxidative stress and inflammation in the brain, and may help to prevent the accumulation of toxic protein aggregates.

Side Effects

GHK-Cu is generally considered safe and well-tolerated when used in research settings. However, as with any substance, there is a potential for side effects, particularly when used at high concentrations or for prolonged periods. Some possible side effects may include:

  • Skin irritation: In rare cases, topical application of GHK-Cu may cause mild skin irritation, redness, or itching.

  • Allergic reactions: Some individuals may be allergic to copper or the peptide components of GHK-Cu, which could lead to allergic reactions, such as rash, hives, or difficulty breathing.

  • Interactions with other substances: GHK-Cu may interact with other medications or supplements, particularly those that affect copper metabolism or have antioxidant properties. Researchers should exercise caution when combining GHK-Cu with other substances.

It is important to note that the safety and efficacy of GHK-Cu for human use have not been fully established, and more research is needed to determine the long-term effects of this peptide complex.

Summary

GHK-Cu is a naturally occurring peptide complex with a wide range of potential therapeutic applications, particularly in the fields of dermatology, regenerative medicine, and anti-aging research. The peptide complex has been shown to stimulate collagen synthesis, promote wound healing, and exhibit antioxidant and anti-inflammatory properties. Additionally, GHK-Cu has demonstrated promise in promoting hair growth and providing neuroprotection in the context of neurodegenerative diseases.

While GHK-Cu is generally considered safe and well-tolerated in research settings, more studies are needed to fully understand its long-term effects and potential side effects. As with any research material, proper precautions and guidelines should be followed when handling and using GHK-Cu.

As the scientific community continues to investigate the therapeutic potential of GHK-Cu, this peptide complex may emerge as a valuable tool in the development of new treatments for a variety of skin conditions, wound healing applications, and age-related disorders.

References

  1. Wang Y, Lin J, Yu Z, Cheng J, Cheng J, Cui W. Rigid-flexible nanocarriers loaded with active peptides for antioxidant and anti-inflammatory applications in skin. Colloids Surf B Biointerfaces. 2024.

  2. Rakhmetova KK, Mishina ES, Bobyntsev II, Bezhin AI, Vorvul AO. Effects of Gly-His-Lys-D-Ala Peptide on Skin Wound Regeneration Processes. Bull Exp Biol Med. 2024.

  3. Tucker M, Liao GY, Park JY, Rosenfeld M, Wezeman J, Mangalindan R, Ratner D, Darvas M, Ladiges W. Behavioral and neuropathological features of Alzheimer's disease are attenuated in 5xFAD mice treated with intranasal GHK peptide. bioRxiv [Preprint]. 2023.

  4. Liu T, Liu Y, Zhao X, Zhang L, Wang W, Bai D, Liao Y, Wang Z, Wang M, Zhang J. Thermodynamically stable ionic liquid microemulsions pioneer pathways for topical delivery and peptide application. Bioact Mater. 2023.

  5. Tucker M, Keely A, Park JY, Rosenfeld M, Wezeman J, Mangalindan R, Ratner D, Ladiges W. Intranasal GHK peptide enhances resilience to cognitive decline in aging mice. bioRxiv [Preprint]. 2023.

  6. Zhang Q, Liu J, Deng MM, Tong R, Hou G. Relief of ovalbumin-induced airway remodeling by the glycyl-l-histidyl-l-lysine-Cu2+ tripeptide complex via activation of SIRT1 in airway epithelial cells. Biomed Pharmacother. 2023.

  7. Ren Z, Liu C, Wei Y, Liu C, Shi C, Wang X, Tang Y, Wang R, Liu Z. Multi working mode SPR chip laboratory for high refractive index detection. Opt Express. 2023.

  8. Wang F, Yu X, Yu Z, Cui Y, Xu L, Huo S, Ding Z, Zhao L, Du L, Qiu Y. Improved laccase production by Trametes versicolor using Copper-Glycyl-L-Histidyl-L-Lysine as a novel and high-efficient inducer. Front Bioeng Biotechnol. 2023.

  9. Jiang F, Wu Y, Liu Z, Hong M, Huang Y. Synergy of GHK-Cu and hyaluronic acid on collagen IV upregulation via fibroblast and ex-vivo skin tests. J Cosmet Dermatol. 2023.

  10. Deng M, Zhang Q, Yan L, Bian Y, Li R, Gao J, Wang Y, Miao J, Li J, Zhou X, Hou G. Glycyl-l-histidyl-l-lysine-Cu2+ rescues cigarette smoking-induced skeletal muscle dysfunction via a sirtuin 1-dependent pathway. J Cachexia Sarcopenia Muscle. 2023.

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