Fmoc-L-2-Cyanophenylalanine: A Versatile Amino Acid Derivative for Advanced Peptide Synthesis
Unlock the potential of advanced peptide synthesis with our high-purity Fmoc-L-2-Cyanophenylalanine.
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Fmoc-L-2-Cyanophenylalanine
Fmoc-L-2-Cyanophenylalanine is a crucial building block in modern organic synthesis, particularly renowned for its utility in solid-phase peptide synthesis (SPPS). Its unique structure, incorporating both the Fmoc protecting group and a cyano substituent on the phenylalanine ring, allows for precise control during peptide chain elongation. This compound is vital for researchers aiming to synthesize complex peptides for applications ranging from drug discovery to the development of novel biomaterials.
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- Our high-purity Fmoc-L-2-Cyanophenylalanine is essential for successful peptide synthesis, contributing to the creation of intricate peptide sequences.
- Explore the versatility of this amino acid derivative in various drug discovery applications, enabling the development of new therapeutic agents.
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Key Advantages
Enhanced Peptide Synthesis Efficiency
Utilizing Fmoc-L-2-Cyanophenylalanine in your peptide synthesis workflow significantly enhances reaction efficiency, allowing for the creation of complex peptide structures with higher yields and purity.
Facilitates Drug Discovery
As a key component in drug discovery, this amino acid derivative supports the development of novel therapeutic peptides and drug delivery systems, leveraging its unique chemical properties.
Versatile Chemical Reactivity
The presence of the cyano group and the Fmoc protecting group provides versatile chemical reactivity, making it an ideal choice for advanced synthetic strategies and creating functionalized peptides.
Key Applications
Peptide Synthesis
As a core building block, Fmoc-L-2-Cyanophenylalanine is indispensable for solid-phase and solution-phase peptide synthesis, enabling the assembly of complex peptide chains.
Drug Discovery
Its integration into peptide-based drug candidates aids in structure-activity relationship studies, optimizing therapeutic efficacy and selectivity for various disease targets.
Bioconjugation
The compound's functional groups are amenable to bioconjugation, allowing for the attachment of biomolecules for targeted therapies, diagnostics, and imaging applications.
Material Science
Fmoc-L-2-Cyanophenylalanine contributes to the development of advanced materials, such as peptide-based hydrogels and nanomaterials, for drug delivery and tissue engineering.