N-Boc-N'-trityl-L-histidine
- CAS No.32926-43-5
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity N-Boc-N'-trityl-L-histidine designed for efficient peptide synthesis. Reliable supply for pharmaceutical R&D and manufacturing.
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Product Overview
N-Boc-N'-trityl-L-histidine is a critically important protected amino acid derivative widely utilized in modern solid phase peptide synthesis and organic chemistry applications. This compound features an orthogonal protection strategy where the alpha amine group is safeguarded by the tert-butoxycarbonyl moiety while the imidazole nitrogen on the side chain is protected by the trityl group. This dual protection scheme is essential for preventing unwanted side reactions during complex peptide assembly processes. Our manufacturing facility ensures that every batch meets rigorous pharmaceutical standards suitable for both research and large scale production environments.
Key Specifications
We maintain strict quality control protocols to guarantee consistency and reliability for our global clientele. The following table outlines the standard physical and chemical properties associated with this product grade.
| Parameter | Specification |
|---|---|
| CAS Number | 32926-43-5 |
| Molecular Formula | C30H31N3O4 |
| Molecular Weight | 497.59 g/mol |
| Appearance | White powder |
| Purity | Greater than or equal to 98 percent |
| Moisture Content | Less than 0.5 percent |
| Melting Point | Approximately 130 degrees Celsius |
Industrial Applications
This protected histidine derivative serves as a fundamental building block in the pharmaceutical industry particularly for the development of peptide based therapeutics and diagnostic agents. The stability of the Boc and Trityl groups allows for efficient coupling reactions without significant racemization which is crucial for maintaining the biological activity of the final peptide product. It is extensively used in the synthesis of hormonal peptides enzyme inhibitors and various bioactive compounds requiring histidine residues. Researchers value this intermediate for its solubility profile and compatibility with standard deprotection conditions used in automated synthesizers.
Storage and Handling
To maintain optimal chemical stability and prevent degradation proper storage conditions must be observed at all times. The product should be stored at zero degrees Celsius in a tightly closed container to minimize exposure to atmospheric moisture which can hydrolyze the protecting groups over time. Containers must be kept in a cool dry place away from direct sunlight and strong oxidizing agents. When handling this material personnel should wear appropriate personal protective equipment including gloves and safety glasses to prevent skin or eye irritation. Always refer to the safety data sheet for comprehensive handling instructions before beginning any laboratory work.
Why Choose Our Supply
As a trusted global manufacturer we commit to delivering superior quality chemicals supported by extensive documentation and technical expertise. Our production processes adhere to strict quality management systems ensuring batch to batch consistency.
- Competitive bulk pricing structures for large scale manufacturing needs
- Comprehensive Certificate of Analysis provided with every shipment
- Flexible packaging options including drums and custom configurations
- Dedicated technical support team for synthesis route optimization
- Fast global shipping logistics to ensure timely project completion
Selecting the right supplier for sensitive pharmaceutical intermediates is vital for your project success. We invite you to contact our sales team for detailed quotations and sample requests to verify our quality standards for your specific application requirements.
