Fmoc-2-chloro-L-phenylalanine: A Key Building Block for Peptide Synthesis and Drug Discovery
Unlock advanced peptide structures and novel therapeutics with this essential amino acid derivative.
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Fmoc-2-chloro-L-phenylalanine
Fmoc-2-chloro-L-phenylalanine is a vital protected amino acid, crucial for advancing research in peptide synthesis and drug discovery. Its unique chemical structure and the presence of the Fmoc protecting group enable precise control during peptide chain elongation, making it indispensable for creating complex and functional peptides.
- Fmoc-2-chloro-L-phenylalanine peptide synthesis: Serves as a fundamental component in solid-phase peptide synthesis (SPPS) and solution-phase methods, allowing for the sequential addition of amino acids to build targeted peptide sequences.
- Fmoc-2-chloro-L-phenylalanine purity: Available with high purity levels, ensuring reliable and reproducible results in demanding research applications.
- Fmoc-2-chloro-L-phenylalanine applications: Extensively utilized in the development of novel therapeutic agents, protein engineering, and studies within neuroscience due to its specific chemical properties.
- Fmoc-2-chloro-L-phenylalanine chemical properties: Possesses a molecular weight of 421.9 and the molecular formula C24H20ClNO4, making it a versatile building block for medicinal chemists.
Advantages Provided by the Product
Enhanced Peptide Design
Leverage Fmoc-2-chloro-L-phenylalanine drug development capabilities to design peptides with tailored functionalities for therapeutic applications.
Reliable Synthesis Support
Utilize this chemical building block, known for its consistent quality and performance, to ensure successful peptide synthesis campaigns.
Broad Research Applicability
Explore new avenues in Fmoc-2-chloro-L-phenylalanine in neuroscience research and other advanced biological fields.
Key Applications
Peptide Synthesis
As a critical amino acid derivative, it is fundamental to the construction of complex peptide sequences for research and development purposes.
Drug Development
Its incorporation into drug candidates can lead to novel therapeutics by introducing specific structural modifications and functionalities.
Biotechnology
Enables advancements in protein engineering and the development of diagnostic tools, leveraging its unique chemical characteristics.
Neuroscience Research
Plays a role in investigating neurotransmitter interactions and developing potential treatments for neurological disorders.
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