Boc-L-Propargylglycine: A Versatile Amino Acid Derivative for Peptide Synthesis and Drug Discovery
Discover the core value of this essential building block for advanced chemical synthesis and pharmaceutical research.
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Boc-L-Propargylglycine
Boc-L-Propargylglycine, identified by its CAS number 63039-48-5, is a crucial protected amino acid derivative. Its primary role is as a fundamental building block in sophisticated peptide synthesis, enabling the creation of complex peptide sequences for various applications. The presence of the Boc (tert-butyloxycarbonyl) protecting group ensures controlled reactions, while the propargyl moiety offers unique chemical reactivity for advanced synthetic strategies.
- Unlock advanced peptide synthesis with Boc-L-Propargylglycine, a key component for creating custom peptide sequences.
- Leverage the unique reactivity of Boc-L-Propargylglycine in organic synthesis to build novel molecular architectures.
- Explore new frontiers in medicinal chemistry by incorporating this versatile amino acid derivative into drug discovery pipelines.
- Advance your drug discovery projects with a reliable supply of high-purity Boc-L-Propargylglycine.
Key Advantages Offered
Enhanced Reactivity
The propargyl group in Boc-L-Propargylglycine significantly enhances its reactivity, making it ideal for click chemistry and other coupling reactions essential for modern peptide synthesis.
Versatile Building Block
As a protected amino acid, it serves as a versatile building block in both organic synthesis and the development of complex biomolecules for pharmaceutical applications.
High Purity and Quality
With a purity of ≥98%, Boc-L-Propargylglycine meets the stringent demands of research and development in medicinal chemistry and beyond.
Key Applications
Peptide Synthesis
Essential for constructing complex peptides used in therapeutics, diagnostics, and biochemical research, leveraging Boc-L-Propargylglycine CAS 63039-48-5.
Organic Synthesis
A key intermediate in the creation of diverse organic molecules, facilitating complex reaction pathways in chemical research and development.
Medicinal Chemistry
Crucial for designing and synthesizing novel drug candidates, exploring new therapeutic targets, and understanding structure-activity relationships.
Drug Discovery
A vital component in the early stages of drug discovery, enabling the exploration of new chemical entities with potential pharmaceutical activity.