Boc-(S)-3-Amino-3-phenylpropionic Acid: A Key Building Block for Peptide Synthesis and Pharmaceutical Research
Discover the essential role of this chiral amino acid derivative in advancing drug discovery and biochemical innovation.
Get a Quote & SampleProduct Core Value

Boc-(S)-3-Amino-3-phenylpropionic Acid
This compound is a vital chiral amino acid derivative, extensively used as a building block in sophisticated peptide synthesis and cutting-edge pharmaceutical research. Its well-defined chemical structure and the presence of the Boc protecting group make it an indispensable tool for chemists aiming to create complex molecules with specific biological activities.
- Leveraging Boc protected amino acid synthesis techniques, researchers can effectively integrate this compound into peptide chains, ensuring stability and enhanced bioactivity for therapeutic peptides.
- Its role as an intermediate for neuroprotective agents makes it highly sought after in the development of treatments for neurological disorders, contributing to advancements in brain health research.
- Utilizing Boc-(S)-3-Amino-3-phenylpropionic acid in peptide synthesis offers a reliable method for constructing peptides with precise sequences and desired pharmacological properties.
- The compound's application in pharmaceutical research supports the discovery of novel therapeutic agents, addressing unmet needs in various disease areas.
Product Advantages
Enhanced Peptide Stability
The incorporation of chiral amino acid derivatives in drug development, such as this one, often leads to peptides with improved stability against enzymatic degradation, prolonging their efficacy in vivo.
Facilitates Drug Discovery
As a crucial intermediate for neuroprotective agents, it accelerates the drug discovery pipeline by providing a ready-to-use component for synthesizing potential treatments.
Versatile Synthetic Applications
The compound's utility in Boc protected amino acid synthesis enables a wide range of chemical modifications and conjugations, making it adaptable for various research needs.
Key Applications
Peptide Synthesis
A cornerstone in the creation of therapeutic peptides and research peptides, contributing to advancements in the field.
Pharmaceutical Research
An essential component in the discovery and development of new drugs, particularly those targeting complex diseases.
Drug Development
Serves as a critical intermediate for synthesizing potential drug candidates with improved efficacy and specificity.
Biochemistry
Used in biochemical assays to understand molecular interactions and metabolic pathways, providing valuable scientific insights.