Discover the new Chem-Impex: Where innovation starts with a bond.

Catalog Number:
32659
CAS Number:
54799-93-8
Bz-Phe-Val-Arg-pNA·HCl
Documents
$113.87 /25 mg
Taille
Request Bulk Quote
Product Information

Bz-Phe-Val-Arg-pNA·HCl is a potent peptide compound widely utilized in biochemical research and pharmaceutical applications. This compound, also known as Benzoyl-Phenyl-Valine-Arginine-p-Nitroanilide Hydrochloride, serves as a valuable substrate for studying proteolytic enzymes, particularly in the context of enzyme kinetics and inhibition studies. Its unique structure, featuring a p-nitroanilide moiety, allows for the easy monitoring of enzymatic activity through spectrophotometric methods, making it an essential tool for researchers in enzymology and drug development.

In addition to its applications in enzyme studies, Bz-Phe-Val-Arg-pNA·HCl is also employed in the synthesis of peptide-based therapeutics and can be utilized in high-throughput screening assays. Its specificity and sensitivity in detecting protease activity make it a preferred choice for researchers aiming to explore protease-related diseases, such as cancer and neurodegenerative disorders. With its reliable performance and versatility, this compound stands out as a crucial asset for laboratories focused on biochemical and pharmaceutical advancements.

CAS Number
54799-93-8
Molecular Formula
C33H40N8O6 · HCl
Molecular Weight
681.19
MDL Number
MFCD00038397
PubChem ID
189147
Conditions
Conserver à ≤ -10 °C
General Information
CAS Number
54799-93-8
Molecular Formula
C33H40N8O6 · HCl
Molecular Weight
681.19
MDL Number
MFCD00038397
PubChem ID
189147
Conditions
Conserver à ≤ -10 °C
Properties
Additional property information coming soon!
-
Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

Bz-Phe-Val-Arg-pNA·HCl is widely utilized in research focused on:

  • Biochemical Assays: This compound serves as a substrate in enzyme assays, particularly for studying proteases. Its specificity allows researchers to measure enzyme activity accurately, facilitating drug development and disease research.
  • Peptide Synthesis: It is employed in the synthesis of peptides, which are crucial for developing therapeutics. The compound's structure aids in creating peptides with enhanced stability and bioactivity.
  • Drug Development: In pharmaceutical research, it is used to design and test new drugs, especially those targeting specific enzymes. Its ability to mimic natural substrates makes it valuable in screening potential drug candidates.
  • Diagnostic Tools: The compound is incorporated into diagnostic kits for detecting enzyme-related diseases. Its specificity enhances the sensitivity and accuracy of these tests, benefiting clinical diagnostics.
  • Research on Protein Interactions: It helps in studying protein-protein interactions, which is vital for understanding cellular processes. This application aids researchers in unraveling complex biological pathways and developing targeted therapies.

Citations