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Primaquine enantiomers

Fig. 12-1. Separation of primaquine enantiomers on a Chiralcel OD CSP. Chromatographic conditions 20 % methanol with 0.5 % isopropylamine in carbon dioxide, 2.0 mL min f 15 MPa, 30 °C. Fig. 12-1. Separation of primaquine enantiomers on a Chiralcel OD CSP. Chromatographic conditions 20 % methanol with 0.5 % isopropylamine in carbon dioxide, 2.0 mL min f 15 MPa, 30 °C.
Nishi et al. [110] used dextran and dextrin as chiral selectors in capillary-zone electrophoresis. Polysaccharides such as dextrins, which are mixtures of linear a-(l,4)-linked D-glucose polymers, and dextrans, which are polymers of D-glucose units linked predominantly by a-(l,6) bonds, have been employed as chiral selectors in the capillary electrophoretic separation of enantiomers. Because these polymers are electrically neutral, the method is applicable to ionic compounds. The enantiomers of basic or cationic drugs such as primaquine were successfully separated under acidic conditions. The effects of molecular mass and polysaccharide concentration on enantioselectivity were investigated. [Pg.194]

Phinney et al. [Ill] investigated the application of citrus pectins, as chiral selectors, to enantiomer separations in capillary electrophoresis. Successful enantioreso-lution of primaquine and other antimalarials, was achieved by utilizing potassium polypectate as the chiral selector. Changes in pH, chiral additive concentration, and capillary type were studied in relation to chiral resolution. The effect of degree of esterification of pectin materials on chiral recognition was evaluated. [Pg.194]


See other pages where Primaquine enantiomers is mentioned: [Pg.191]    [Pg.195]    [Pg.376]    [Pg.701]    [Pg.214]    [Pg.270]   
See also in sourсe #XX -- [ Pg.303 ]

See also in sourсe #XX -- [ Pg.303 ]




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