CAS 79994-24-4
:dynorphin A fragment 1-10 porcine*sequence
Description:
Dynorphin A fragment 1-10, specifically from porcine sources, is a peptide that consists of the first ten amino acids of the dynorphin A molecule, which is an endogenous opioid peptide. This fragment is known for its role in modulating pain, stress, and emotional responses through its interaction with opioid receptors, particularly the kappa-opioid receptor. The sequence of this peptide typically includes specific amino acids that contribute to its biological activity and receptor binding affinity. Dynorphin A fragment 1-10 is often studied for its potential therapeutic applications in pain management and neurobiology. It is characterized by its relatively small size, typically comprising ten amino acids, which allows for efficient synthesis and analysis in laboratory settings. The CAS number 79994-24-4 uniquely identifies this specific peptide, facilitating its recognition in chemical databases and research literature. Overall, this fragment serves as a valuable tool in understanding the complex mechanisms of opioid signaling and its implications in various physiological and pathological processes.
Formula:C57H91N19O12
Synonyms:- Dynorphin A (1-10)
- H-Tyr-Gly-Gly-Phe-Leu-Arg-Arg-Ile-Arg-Pro-OH
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Found 2 products.
Dynorphin A (1-10)
CAS:Dynorphin A (1-10) is an opioid peptide, binds κ-opioid receptor, blocks NMDA current, IC50: 42.0 μM.
Formula:C57H91N19O12Purity:98%Color and Shape:SolidMolecular weight:1234.45Dynorphin A (1-10) acetate salt
CAS:Dynorphin A (1-10) acetate salt H-Tyr-Gly-Gly-Phe-Leu-Arg-Arg-Ile-Arg-Pro-OH acetate salt is a dynorphin analog with analgesic activity. It has been shown to have a beneficial effect in the tail flick test and immobilization tests. Dynorphin A (1-10) acetate salt H-Tyr-Gly-Gly-Phe-Leu-Arg can be used as an analgesic for pain relief. This compound also has antiinflammatory effects, which may be due to its ability to inhibit prostaglandin synthesis.Formula:C57H91N19O12Purity:Min. 95%Molecular weight:1,234.45 g/mol

