




GHK-Cu 100mg
$60.00 $54.00
GHK-Cu, or Glycyl-L-Histidyl-L-Lysine Copper, is a peptide that has garnered attention in the research community due to its potential benefits in various biological processes. Available in a 100mg formulation with 99% purity, it is often utilized in studies focused on healing and regenerative properties.
Weight | .04 lbs |
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Dimensions | 2 × 1 × 1 in |
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BUY | 1 - 4 | 0% $54.00 |
BUY | 5 - 9 | 10% $48.60 |
BUY | 10 + | 15% $45.90 |
Understanding the Molecular Composition of GHK-Cu
GHK-Cu is a research-only peptide that consists of three pivotal amino acids: glycine, histidine, and lysine. These amino acids are integral to the peptide’s structure and function, providing both stability and reactivity. The specific arrangement of these components facilitates the formation of a stable complex with copper ions, thereby enhancing the peptide’s unique characteristics.
The molecular structure of GHK-Cu can be described in terms of its constituent amino acids. Glycine, the smallest amino acid, contributes to the flexibility of the peptide chain, allowing for necessary conformational changes. Histidine, containing an imidazole side chain, plays a crucial role in metal ion coordination. Its ability to donate and accept protons facilitates the binding of copper ions, which is elemental to the peptide’s overall integrity. Lysine, with its positively charged side chain, adds to the electrostatic interactions that help stabilize the structure, particularly when complexed with copper.
The interaction between the three amino acids and copper ions not only stabilizes the GHK-Cu complex but also influences its physicochemical properties, making it suitable for various research applications. Copper ions in the GHK-Cu formulation are particularly significant, as they contribute to the peptide’s stability and solubility in aqueous environments. Moreover, the presence of copper is believed to play a crucial role in maintaining the proper spatial arrangement of the peptide, which is vital for any potential interactions it may have in a research context.
In summary, understanding the molecular composition of GHK-Cu sheds light on its structural characteristics and the importance of copper ions in stabilizing the peptide. As a highly purified compound with a 99% purity level, GHK-Cu serves as a valuable subject for various research endeavors, primarily focused on its composition rather than its effects or applications.
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