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Catalog Number:
04523
CAS Number:
81109-85-5
N-Carboxymethyl-Phe-Leu-OH
Temperature Sensitive
Documents
$99.90 /5MG
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Product Information

N-Carboxymethyl-Phe-Leu-OH is a versatile compound that plays a significant role in peptide synthesis and biochemistry. This amino acid derivative is recognized for its unique structure, which combines the properties of phenylalanine and leucine, making it an essential building block in the development of bioactive peptides. Its carboxymethyl group enhances solubility and reactivity, allowing for improved interaction in various biochemical applications. Researchers utilize N-Carboxymethyl-Phe-Leu-OH in drug design, particularly in the development of therapeutic peptides that target specific biological pathways. Additionally, its application extends to the food industry, where it can be used as a flavor enhancer or nutritional supplement due to its amino acid content.

The compound's ability to facilitate peptide bond formation and its compatibility with various coupling agents make it a preferred choice for chemists and biochemists alike. Its unique properties not only enhance the stability of synthesized peptides but also improve their bioavailability, making it a valuable asset in pharmaceutical formulations. With its broad range of applications, N-Carboxymethyl-Phe-Leu-OH stands out as a crucial component in advancing research and product development in both the pharmaceutical and food sectors.

CAS Number
81109-85-5
Molecular Formula
C17H24N2O5
Molecular Weight
336.39
MDL Number
MFCD00038704
Conditions
Store at ≤-4°C
General Information
CAS Number
81109-85-5
Molecular Formula
C17H24N2O5
Molecular Weight
336.39
MDL Number
MFCD00038704
Conditions
Store at ≤-4°C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

N-Carboxymethyl-Phe-Leu-OH is widely utilized in research focused on:

  • Peptide Synthesis: This compound serves as a building block in peptide synthesis, allowing researchers to create specific peptides for various biological studies.
  • Drug Development: It is used in the pharmaceutical industry to develop new drugs, particularly those targeting metabolic disorders, due to its ability to modify biological activity.
  • Biotechnology: In biotechnology, it aids in the design of enzyme inhibitors, which are crucial for developing treatments for diseases like cancer and diabetes.
  • Diagnostic Applications: The compound can be employed in diagnostic assays, enhancing the sensitivity and specificity of tests for certain biomarkers.
  • Research on Protein Interactions: It is valuable in studies exploring protein-protein interactions, helping scientists understand cellular processes and develop targeted therapies.

Citations