CAS 66076-38-8
:N-T-boc-phe-tyr-dicyclohexylammonium
Description:
N-T-boc-phe-tyr-dicyclohexylammonium, with the CAS number 66076-38-8, is a chemical compound that features a tert-butyloxycarbonyl (Boc) protecting group attached to the phenylalanine (Phe) and tyrosine (Tyr) amino acids. This compound is typically used in peptide synthesis and other organic chemistry applications due to its ability to protect amino groups during reactions. The dicyclohexylammonium component suggests that it may exhibit properties associated with quaternary ammonium compounds, such as solubility in organic solvents and potential ionic interactions. The presence of the Boc group allows for selective deprotection under mild acidic conditions, facilitating the synthesis of complex peptides. Additionally, the bulky dicyclohexylammonium moiety can influence the compound's solubility and stability, making it useful in various chemical and pharmaceutical applications. Overall, N-T-boc-phe-tyr-dicyclohexylammonium is characterized by its protective group functionality, structural complexity, and utility in synthetic organic chemistry.
Formula:C23H28N2O6·C12H23N
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Found 3 products.
N-T-BOC-PHE-TYR-DICYCLOHEXYLAMMONIUM
CAS:Formula:C23H28N2O6Purity:97%Color and Shape:SolidMolecular weight:428.4782(S)-2-((S)-2-((tert-Butoxycarbonyl)amino)-3-phenylpropanamido)-3-(4-hydroxyphenyl)propanoic acid
CAS:(S)-2-((S)-2-((tert-Butoxycarbonyl)amino)-3-phenylpropanamido)-3-(4-hydroxyphenyl)propanoic acidPurity:97%Molecular weight:428.49g/molBoc-Phe-Tyr-OH
CAS:<p>Boc-Phe-Tyr-OH is a pancreatic enzyme that has been shown to be stable in the presence of buffers and tissues. It is used for the treatment of cancer and pancreatic diseases, such as cystic fibrosis and diabetes. Boc-Phe-Tyr-OH has been shown to have high uptake rates in caco-2 cells, which are human intestinal cells that are used to study drug transport. This compound also has an inhibitory effect on cell proliferation and DNA synthesis.</p>Formula:C23H28N2O6Purity:Min. 95%Molecular weight:428.48 g/mol



