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Copper Peptide CAS 49557-75-7 Product Information
CAS No | 49557-75-7 |
Product Name | Copper Peptide |
Synonyms | GHK Ahk-cu Glycyl-L-Histidyl-L-Lysine GHKCuCopperPeptide Tripeptide-1Copper CopperPeptideAHK-Cu Cu-GHK Copperpeptides CopperPeptidepowder(GHK-cu) GHK2-CU |
Free Sample | Available |
Molecular Formula | C14H24N6O4 |
Molecular Weight | 340.38 |
Purity | 99% |
Free Shipping | YES |
Copper Peptide CAS 49557-75-7 Product Information
CAS No | 49557-75-7 |
Product Name | Copper Peptide |
Synonyms | GHK Ahk-cu Glycyl-L-Histidyl-L-Lysine GHKCuCopperPeptide Tripeptide-1Copper CopperPeptideAHK-Cu Cu-GHK Copperpeptides CopperPeptidepowder(GHK-cu) GHK2-CU |
Free Sample | Available |
Molecular Formula | C14H24N6O4 |
Molecular Weight | 340.38 |
Purity | 99% |
Free Shipping | YES |
Copper Peptide CAS 49557-75-7 Chemical Properties
Melting point | >144°C (dec.) |
Boiling point | 831.0±65.0 °C(Predicted) |
Density | 1.324 |
Stability | Hygroscopic |
Storage conditions | under inert gas (nitrogen or Argon) at 2–8 °C |
Solubility | Aqueous Acid (Slightly), DMSO (Slightly) |
Form | Solid |
Color | Off-White |
Acidity coefficient (pKa) | 3.11±0.10(Predicted) |
InChIKey | MVORZMQFXBLMHM-QWRGUYRKSA-N |
SMILES | C(O)(=O)[C@H](CCCCN)NC(=O)[C@H](CC1N=CNC=1)NC(=O)CN |
Copper Peptide CAS 49557-75-7 Chemical Properties
Melting point | >144°C (dec.) |
Boiling point | 831.0±65.0 °C(Predicted) |
Density | 1.324 |
Stability | Hygroscopic |
Storage conditions | under inert gas (nitrogen or Argon) at 2–8 °C |
Solubility | Aqueous Acid (Slightly), DMSO (Slightly) |
Form | Solid |
Color | Off-White |
Acidity coefficient (pKa) | 3.11±0.10(Predicted) |
InChIKey | MVORZMQFXBLMHM-QWRGUYRKSA-N |
SMILES | C(O)(=O)[C@H](CCCCN)NC(=O)[C@H](CC1N=CNC=1)NC(=O)CN |
Properties, uses and production process of tripeptide
Introduction
Tripeptide(copperpeptide)isformedfromthreeaminoacids.Tripeptideisalsocalledbluecopperpeptide;glycyl-L-histidyl-L_lysine.TripeptideisaternarymolecuChemicalbooklecomposedofthreeaminoacidsconnectedbytwopeptidebonds.Itcaneffectivelypreventthenerveconductionofacetylcholinesubstance,relaxmuscles,andimprovedynamicwrinkles.
Physical and chemical properties
Three peptides: resist carbonylation, protect collagen from damage by activated carbon groups, promote the growth of type III collagen, resist oxidation and glycation, and are mainly used in cosmetics.
Mechanism of action
The three peptides act on cells, increase the vitality of collagen cells, accelerate fire power production, and can improve dynamic wrinkles.
effect
The functions of three peptides are as follows: three peptides have anti-carbonylation, protect collagen from being damaged by activated carbon groups, promote the growth of type III collagen, resist oxidation, and resist glycation
Three peptides can play corresponding roles by effectively complexing and transporting copper elements. For example, the complexed copper peptides can effectively stimulate the biosynthesis of collagen in fibroblasts and promote rapid wound healing from Chemicalbook; Copper peptides can also effectively block the nerve conduction of acetylcholine substances, thereby relaxing muscles and improving dynamic wrinkles. Tripeptides are now widely used in cosmetic additives.
Properties, uses and production process of tripeptide
Introduction
Tripeptide(copperpeptide)isformedfromthreeaminoacids.Tripeptideisalsocalledbluecopperpeptide;glycyl-L-histidyl-L_lysine.TripeptideisaternarymolecuChemicalbooklecomposedofthreeaminoacidsconnectedbytwopeptidebonds.Itcaneffectivelypreventthenerveconductionofacetylcholinesubstance,relaxmuscles,andimprovedynamicwrinkles.
Physical and chemical properties
Three peptides: resist carbonylation, protect collagen from damage by activated carbon groups, promote the growth of type III collagen, resist oxidation and glycation, and are mainly used in cosmetics.
Mechanism of action
The three peptides act on cells, increase the vitality of collagen cells, accelerate fire power production, and can improve dynamic wrinkles.
effect
The functions of three peptides are as follows: three peptides have anti-carbonylation, protect collagen from being damaged by activated carbon groups, promote the growth of type III collagen, resist oxidation, and resist glycation
Three peptides can play corresponding roles by effectively complexing and transporting copper elements. For example, the complexed copper peptides can effectively stimulate the biosynthesis of collagen in fibroblasts and promote rapid wound healing from Chemicalbook; Copper peptides can also effectively block the nerve conduction of acetylcholine substances, thereby relaxing muscles and improving dynamic wrinkles. Tripeptides are now widely used in cosmetic additives.