Unlock Advanced Peptide Synthesis with Fmoc-(R)-3-Amino-4-(2-bromophenyl)butyric Acid
A premium building block for cutting-edge peptide research and pharmaceutical development.
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Fmoc-(R)-3-Amino-4-(2-bromophenyl)butyric Acid
This specialized amino acid derivative is a critical component for researchers engaged in complex peptide synthesis and the development of novel therapeutics. Its precise chemical structure and high purity ensure reliable incorporation into peptide chains, facilitating the creation of advanced biomolecules.
- Facilitate precise peptide chain elongation using Fmoc amino acid building blocks for demanding research.
- Enable drug discovery efforts by providing a high-purity unnatural amino acid for novel therapeutic design.
- Explore the synthesis of complex peptide structures with this essential building block for advanced organic synthesis.
- Enhance your peptide synthesis workflow with a reliable and high-quality Fmoc protected amino acid.
Advantages You'll Experience
Enhanced Synthesis Efficiency
Leverage the power of Fmoc protection for streamlined and efficient peptide synthesis, crucial for achieving optimal yields in drug development.
Structural Versatility
Incorporate this unnatural amino acid into your research to create peptides with unique properties and enhanced bioactivity, advancing your drug discovery projects.
Guaranteed Purity and Quality
Benefit from a product with high purity, ensuring predictable outcomes in your peptide synthesis and biochemical research applications.
Key Applications
Peptide Synthesis
A fundamental component in solid-phase peptide synthesis (SPPS), enabling the construction of intricate peptide sequences for research and therapeutic development.
Drug Development
Integral to the design and synthesis of peptide-based drugs, offering a pathway to novel therapeutics targeting specific biological pathways.
Biochemical Research
Utilized in various biochemical research applications, supporting studies on protein structure, function, and interactions.
Custom Synthesis
Serves as a valuable intermediate in custom synthesis projects requiring specialized amino acid derivatives for unique applications.