Discover 6-Chloro-L-Tryptophan: A Key Component in Peptide Chemistry
Explore the synthesis, properties, and crucial applications of this modified amino acid in advanced biochemical research and development.
Get a Quote & SampleUnveiling the Core Value of 6-Chloro-L-Tryptophan

6-Chloro-L-Tryptophan
6-Chloro-L-Tryptophan is a specialized amino acid derivative that plays a significant role in the field of peptide synthesis. Its unique chemical structure, featuring a chlorine atom at the 6th position of the indole ring, allows researchers to incorporate specific modifications into peptides. This modification is vital for exploring protein structure-function relationships and for developing novel peptide-based therapeutics. Its availability as a research chemical makes it a valuable tool for advancing biochemical studies and drug discovery efforts.
- Explore the synthesis of 6-Chloro-L-Tryptophan to understand its role in advanced biochemical research.
- The CAS number for 6-Chloro-L-Tryptophan is 33468-35-8, essential for accurate identification and sourcing.
- Understand the applications of 6-Chloro-L-Tryptophan in creating peptides with unique properties.
- Discover the importance of modified amino acids in peptide chemistry for targeted research and development.
Key Advantages and Features
Precision in Peptide Synthesis
Utilize 6-Chloro-L-Tryptophan for precise modifications in peptide synthesis, enabling the study of structure-activity relationships and the development of advanced peptide sequences.
Enhanced Research Capabilities
Leverage this chemical building block to explore novel biochemical pathways and create customized molecules for pharmaceutical R&D, thereby accelerating scientific breakthroughs.
Reliable Chemical Sourcing
Access 6-Chloro-L-Tryptophan from reputable chemical suppliers for 6-Chloro-L-Tryptophan, ensuring quality and consistency for your research needs.
Key Applications
Peptide Synthesis
As a protected amino acid derivative, 6-Chloro-L-Tryptophan is crucial for the stepwise synthesis of peptides, allowing for the controlled introduction of specific functionalities.
Chemical Research
Its unique chemical structure makes it an invaluable tool in organic chemistry research, facilitating the study of reaction mechanisms and the synthesis of complex organic molecules.
Biochemical Synthesis
Used in the broader field of biochemical synthesis, it aids in the creation of specialized molecules for life science research, diagnostics, and therapeutic development.
Drug Discovery
Acts as a vital chemical building block in drug discovery pipelines, enabling the creation of novel peptide-based drug candidates with improved efficacy and stability.
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