Mostrando 7 resultados de: 7
Subtipo de publicación
Article(7)
Área temáticas
Química analítica(6)
Química orgánica(3)
Farmacología y terapéutica(2)
Química inorgánica(2)
Técnicas, equipos y materiales(2)
Área de conocimiento
Bioquímica(5)
Química analítica(4)
Farmacología(2)
Ciencia de materiales(1)
Ingeniería química(1)
Origen
scopus(7)
Comparative enantioseparation of ketoprofen with trimethylated α-, β-, and γ-cyclodextrins in capillary electrophoresis and study of related selector-selectand interactions using nuclear magnetic resonance spectroscopy
ArticleAbstract: The enantiomers of ketoprofen were separated by capillary electrophoresis using the (2,3,6-tri-O-metPalabras claves:1D ROESY, capillary electrophoresis, cyclodextrins, enantiomer affinity pattern, ketoprofen, nuclear magnetic resonance spectroscopy, Separation mechanismAutores:Antonio Salgado, Chankvetadze B., Samakashvili S., Scriba G.K.E.Fuentes:scopusComplexation of daclatasvir by single isomer methylated β-cyclodextrins studied by capillary electrophoresis, NMR spectroscopy and mass spectrometry
ArticleAbstract: In capillary electrophoresis an enantioseparation of daclatasvir (DCV) was observed in case of heptaPalabras claves:capillary electrophoresis, Complex stoichiometry, Complex structure, Cyclodextrin-analyte complexation, Mass spectrometry, nuclear magnetic resonance spectroscopyAutores:Antonio Salgado, Benkovics G., Chankvetadze B., Krait S., Malanga M., Naumann L., Neusüß C., Peluso P., Scriba G.K.E., Sohajda T.Fuentes:scopusInvestigation of the complexation between cyclodextrins and medetomidine enantiomers by capillary electrophoresis, NMR spectroscopy and molecular modeling
ArticleAbstract: The migration order of the enantiomers of medetomidine in the presence of cyclodextrins studied by cPalabras claves:Cyclodextrin, enantiomer migration order, molecular modeling, Nuclear magnetic resonance, Selector-selectand complexationAutores:Antonio Salgado, Chankvetadze B., Gago F., Krait S., Scriba G.K.E.Fuentes:scopusIsothermal titration calorimetry and molecular modeling study of the complex formation of daclatasvir by γ-cyclodextrin and trimethyl-β-cyclodextrin
ArticleAbstract: The complex formation between daclatasvir and γ-CD or heptakis(2,3,6-tri-O-methyl)-β-CD (TM-β-CD) waPalabras claves:Complex stoichiometry, Cyclodextrin complexes, Daclatasvir, isothermal titration calorimetry, Molecular dynamics simulationAutores:Antonio Salgado, Chankvetadze B., Dallocchio R., Dessì A., Krait S., Landy D., Nakhle L., Peluso P., Scriba G.K.E.Fuentes:scopusUnusual complexation behavior between daclatasvir and γ-Cyclodextrin. A multiplatform study
ArticleAbstract: During a screening of cyclodextrins (CDs) as chiral selectors for the separation of daclatasvir (DCVPalabras claves:capillary electrophoresis, Complex stoichiometry, Complex structure, Cyclodextrin, Nuclear magnetic resonance, Selector-selectand complexationAutores:Antonio Salgado, Chankvetadze B., Krait S., Naumann L., Neusüß C., Scriba G.K.E., Villani C.Fuentes:scopusSeparation of enantiomers of norephedrine by capillary electrophoresis using cyclodextrins as chiral selectors: Comparative CE and NMR studies
ArticleAbstract: In this study, the enantiomer migration order (EMO) of norephedrine (NEP) in the presence of variousPalabras claves:Analyte-selector complexes, cyclodextrins, enantiomer migration order, Enantioseparation, NorephedrineAutores:Antonio Salgado, Chankvetadze B., Crego A.L., Lomsadze K., Marina M.L., Scriba G.K.E., Vega E.D.Fuentes:scopusStructural characterization of methyl-β-cyclodextrins by high-performance liquid chromatography and nuclear magnetic resonance spectroscopy and effect of their isomeric composition on the capillary electrophoresis enantioseparation of daclatasvir
ArticleAbstract: The separation of daclatasvir and its R,R,R,R-enantiomer was studied by capillary electrophoresis usPalabras claves:capillary electrophoresis, Cyclodextrin isomers, Degree of substitution, enantiomer migration order, Enantioseparation, Methyl-β-cyclodextrinAutores:Antonio Salgado, Benkovics G., Chankvetadze B., Krait S., Malanga M., Scriba G.K.E., Sohajda T., Szakály P.S.Fuentes:scopus