Boc-His(Trt)-Aib-OH: Your Advanced Peptide Synthesis Building Block
Unlock novel peptide architectures with this high-purity reagent for groundbreaking biomedical applications.
Get a Quote & SampleProduct Core Value

Boc-His(Trt)-Aib-OH
This highly specialized peptide synthesis reagent is essential for the biomedical industry, enabling the creation of peptide sequences that include unconventional amino acids. Its consistent use facilitates the development of unique and optimized peptide structures, vital for advancing targeted drug development, particularly for diseases such as Alzheimer's, cancer, and many others.
- Discover innovative drug development possibilities with Boc-His(Trt)-Aib-OH, a key component in peptide drug development.
- Leverage the power of peptide synthesis reagents to create novel therapeutic agents.
- Our high-purity building blocks are designed for precise and effective peptide construction.
- Explore the potential of unconventional amino acids in your next biomedical research project.
Key Advantages
Enhanced Peptide Architecture
Utilize Boc-His(Trt)-Aib-OH to facilitate the generation of distinct and optimal peptide architectures, crucial for targeted drug development.
Broad Biomedical Application
This reagent plays a vital role in advancing drug development for conditions like Alzheimer's disease, cancer, and numerous other diseases.
High Purity and Reliability
Ensure consistent and high-quality results in your peptide synthesis projects with our meticulously produced building blocks.
Key Applications
Peptide Synthesis
A critical reagent for constructing complex peptide chains, enabling the incorporation of modified and non-standard amino acids.
Drug Discovery
Facilitates the development of novel therapeutic agents by providing a reliable building block for peptide-based drug candidates.
Biomedical Research
Supports cutting-edge research in understanding and treating various diseases by enabling the synthesis of custom peptides.
Chemical Synthesis
Essential for organic chemists involved in creating complex molecular structures for advanced research and development.