Decoding Fmoc-Dab(Boc)-OH: A Key Building Block for Peptide Synthesis
In the intricate world of peptide synthesis, the quality and reliability of building blocks are paramount. Among these essential components, Fmoc-Dab(Boc)-OH (CAS 125238-99-5) stands out as a critical intermediate for researchers and pharmaceutical developers. This article delves into its significance, properties, and the advantages of sourcing it from a trusted manufacturer.
Fmoc-Dab(Boc)-OH, chemically known as Nα-Fmoc-Nγ-Boc-L-2,4-diaminobutyric acid, is a protected amino acid derivative that plays a pivotal role in the construction of complex peptide chains. The Fmoc (9-fluorenylmethoxycarbonyl) group serves as a base-labile protecting group for the alpha-amino function, while the Boc (tert-butoxycarbonyl) group protects the gamma-amino function. This dual protection strategy is fundamental to the success of Fmoc solid-phase peptide synthesis (SPPS), allowing for controlled and stepwise addition of amino acids.
The primary application of Fmoc-Dab(Boc)-OH lies in its ability to introduce the non-proteinogenic amino acid L-2,4-diaminobutyric acid into peptide sequences. This amino acid can confer unique properties to peptides, such as enhanced stability, modified biological activity, or improved interaction with target molecules. Researchers often utilize this building block when designing therapeutic peptides, diagnostic agents, or research tools.
For those looking to buy Fmoc-Dab(Boc)-OH, understanding its specifications is key. Typically, this compound presents as a white powder with a high purity, often exceeding 99.0% as determined by GC. This high purity is not merely a specification but a guarantee of reliable experimental outcomes, minimizing side reactions and ensuring the integrity of the synthesized peptide. When searching for a supplier, especially one based in China, it is crucial to verify their quality control processes and the consistency of their product batches.
The commercial aspect of acquiring such specialized chemicals is also significant. The price of Fmoc-Dab(Boc)-OH can vary depending on the supplier, quantity, and purity. Engaging with reputable manufacturers who provide transparent pricing and offer bulk quotations can lead to substantial cost savings, particularly for larger research projects or commercial production. As a leading manufacturer in China, NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to providing high-quality Fmoc-Dab(Boc)-OH at competitive prices, coupled with reliable supply chain management.
Beyond its direct use in peptide synthesis, Fmoc-Dab(Boc)-OH also serves as an important intermediate in the broader field of organic and pharmaceutical synthesis. Its functional groups can be further manipulated to create a diverse array of complex molecules, contributing to the discovery and development of new chemical entities with potential therapeutic applications. When considering the purchase of this compound, it is always advisable to consult with potential suppliers to discuss your specific application requirements and ensure you are obtaining the most suitable grade.
In conclusion, Fmoc-Dab(Boc)-OH is an indispensable tool for peptide chemists and researchers. Its unique structure and protected functionalities make it a cornerstone for building advanced peptide structures. For any laboratory or company involved in peptide research, understanding where to source this critical intermediate is vital. Partnering with experienced manufacturers and suppliers, like NINGBO INNO PHARMCHEM CO.,LTD., ensures access to high-purity products, competitive pricing, and the reliability needed for successful scientific endeavors.
Perspectives & Insights
Molecule Vision 7
“is dedicated to providing high-quality Fmoc-Dab(Boc)-OH at competitive prices, coupled with reliable supply chain management.”
Alpha Origin 24
“Beyond its direct use in peptide synthesis, Fmoc-Dab(Boc)-OH also serves as an important intermediate in the broader field of organic and pharmaceutical synthesis.”
Future Analyst X
“Its functional groups can be further manipulated to create a diverse array of complex molecules, contributing to the discovery and development of new chemical entities with potential therapeutic applications.”