





GHK-Cu 50mg
$50.00 / month
GHK-Cu, a peptide with a molecular weight of 50mg, is renowned for its significant potential in research. With a high purity level of 99%, this compound is a favorite among researchers looking for reliable and effective peptides.
Weight | .04 lbs |
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Dimensions | 2 × 1 × 1 in |
Bundle & Save! | ||
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BUY | 1 - 4 | 0% $47.50 |
BUY | 5 - 9 | 10% $42.75 |
BUY | 10 + | 15% $40.38 |
Understanding GHK-Cu and Its Molecular Composition
GHK-Cu, a tripeptide composed of glycine, histidine, and lysine, paired with a copper ion, has garnered significant attention in biochemical research due to its unique molecular composition and properties. The molecular formula of GHK-Cu is C12H22N6O6S, which highlights the intricate nature of this peptide. The presence of the copper ion is particularly noteworthy, as it facilitates various biological functions, enhancing the peptide’s activity in numerous applications.
The significance of each component within the GHK-Cu molecule cannot be understated. Glycine contributes to the peptide’s structure and stability, while histidine plays a crucial role in binding the copper ion, influencing its bioavailability and functionality. Lysine, on the other hand, helps in forming strong interactions with cellular receptors, promoting tissue repair and regeneration. Understanding these components is essential for researchers aiming to harness GHK-Cu in experimental contexts.
At a biochemical level, GHK-Cu exhibits numerous properties that make it valuable for research purposes. It has been shown to stimulate collagen synthesis and enhance wound healing, primarily due to its ability to modulate signaling pathways and promote cellular activity. Furthermore, the copper ion within the molecule acts as a cofactor for several enzymes, thereby facilitating critical physiological processes. This interaction showcases the importance of maintaining the integrity and purity of GHK-Cu when utilized in experimental investigations. Any alteration in its molecular composition can significantly affect its functionality and efficacy.
As research continues to explore the potential applications of GHK-Cu, understanding its molecular structure and the implications of its components remains paramount. The integration of this peptide in various disciplines, especially in regenerative medicine and skincare, will highly depend on a thorough comprehension of its biochemical properties and how they interplay within biological systems.
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