Boc-DL-m-Tyrosine (174732-96-8): A Key Building Block in Peptide Synthesis and Drug Development
Discover the essential role of Boc-DL-m-Tyrosine in creating complex peptides and innovative pharmaceuticals. Explore its unique properties and applications as a premier chemical intermediate.
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Boc-DL-m-Tyrosine
As a reliable supplier in China, we offer Boc-DL-m-Tyrosine, a vital intermediate in modern organic synthesis. Its protected amino group enhances stability and control in complex reaction sequences, making it indispensable for precise molecular construction. We are a trusted manufacturer in China, dedicated to providing high-quality chemical building blocks for your research and development needs.
- Unlock advanced organic synthesis with Boc-DL-m-Tyrosine, a key component for successful peptide synthesis.
- Explore the versatility of protected amino acid derivatives in your drug development projects.
- Leverage the specific Boc-DL-m-Tyrosine chemical properties for optimized reaction outcomes.
- Discover why researchers worldwide rely on our Boc-DL-m-Tyrosine CAS 174732-96-8 for critical applications.
Advantages Provided by the Product
Enhanced Reaction Control
Benefit from the tert-butoxycarbonyl (Boc) protecting group, which offers superior stability and selective reactivity, crucial for precise peptide synthesis.
Versatile Building Block
Utilize Boc-DL-m-Tyrosine as a fundamental component in drug development, enabling the creation of novel therapeutic agents.
Reliable Purity
Trust in our commitment to high purity standards, ensuring consistent and reproducible results in your research and manufacturing processes.
Key Applications
Peptide Synthesis
Boc-DL-m-Tyrosine is a cornerstone in solid-phase and solution-phase peptide synthesis, allowing for controlled chain elongation and incorporation of the meta-tyrosine residue.
Drug Development
Its unique structure makes it a valuable starting material for synthesizing peptide-based drugs and complex pharmaceutical compounds.
Organic Chemistry
Researchers utilize Boc-DL-m-Tyrosine for various organic transformations, exploring its reactivity and potential in creating new chemical entities.
Biochemical Studies
This derivative is instrumental in studies involving enzyme-substrate interactions and the synthesis of modified amino acids for biological research.