Boc-Phe(4-NO2)-OH: A Versatile Amino Acid Derivative for Research and Development
NINGBO INNO PHARMCHEM CO.,LTD. proudly offers a wide array of high-quality chemical compounds essential for research and development. Among these, Boc-Phe(4-NO2)-OH, scientifically known as N-(tert-Butoxycarbonyl)-4-nitro-L-phenylalanine, stands out due to its remarkable versatility and importance in various scientific fields, particularly 'peptide synthesis' and 'medicinal chemistry'. Researchers frequently seek 'Boc-Phe(4-NO2)-OH wholesale' or in specific quantities to facilitate their projects.
The primary role of Boc-Phe(4-NO2)-OH is as a protected amino acid derivative. The tert-butyloxycarbonyl (Boc) group is a standard protecting group for amines in organic synthesis. In the context of 'peptide synthesis', it shields the alpha-amino group of phenylalanine, allowing for controlled and sequential addition of amino acids to build peptide chains. This protection is critical for preventing side reactions and ensuring the fidelity of the synthesized peptide sequence. The ease with which the Boc group can be removed under mild acidic conditions makes it highly desirable for synthetic chemists.
What distinguishes Boc-Phe(4-NO2)-OH is the presence of a nitro group (-NO2) at the para position of the phenyl ring. This functional group significantly enhances the compound's utility. The nitro group is electron-withdrawing, which can influence the reactivity of the phenyl ring and the adjacent amino acid residues. More importantly, the nitro group can be readily transformed into other functional groups, most commonly an amine, through reduction. This transformation opens up numerous possibilities for further derivatization, conjugation, and the creation of complex molecular architectures relevant to 'drug discovery' and development.
The applications of Boc-Phe(4-NO2)-OH extend across several critical areas of scientific research. In 'medicinal chemistry', it serves as a valuable building block for synthesizing novel compounds with potential therapeutic activities. Scientists often investigate the 'N-Boc-4-nitro-L-phenylalanine uses' to create molecules that can target specific biological pathways or receptors. The ability to introduce a functionalized phenylalanine residue into a molecule is a powerful strategy in designing new pharmaceuticals. The availability of 'CAS 33305-77-0' ensures that researchers have access to a well-characterized and reliable starting material.
Moreover, Boc-Phe(4-NO2)-OH is instrumental in 'biomolecular research'. It can be incorporated into peptides to study protein-ligand interactions, enzyme mechanisms, or to create peptides with altered stability or binding properties. Its potential in bioconjugation techniques also makes it useful for developing diagnostic tools and targeted drug delivery systems. For any research requiring precise amino acid modifications, Boc-Phe(4-NO2)-OH is a go-to reagent.
NINGBO INNO PHARMCHEM CO.,LTD. is committed to supplying researchers with top-grade Boc-Phe(4-NO2)-OH. Our stringent quality control processes ensure the purity and consistency of our products, making them ideal for demanding applications in 'peptide synthesis' and broader chemical research. Partner with us to acquire the essential reagents that fuel scientific advancement.
Perspectives & Insights
Quantum Pioneer 24
“In 'medicinal chemistry', it serves as a valuable building block for synthesizing novel compounds with potential therapeutic activities.”
Bio Explorer X
“Scientists often investigate the 'N-Boc-4-nitro-L-phenylalanine uses' to create molecules that can target specific biological pathways or receptors.”
Nano Catalyst AI
“The ability to introduce a functionalized phenylalanine residue into a molecule is a powerful strategy in designing new pharmaceuticals.”