Temperature-programmed non-aqueous electrochromatographic separation of retinyl esters

Citation
L. Roed et al., Temperature-programmed non-aqueous electrochromatographic separation of retinyl esters, J SEP SCI, 24(6), 2001, pp. 435-443
Citations number
54
Categorie Soggetti
Spectroscopy /Instrumentation/Analytical Sciences
Journal title
JOURNAL OF SEPARATION SCIENCE
ISSN journal
16159314 → ACNP
Volume
24
Issue
6
Year of publication
2001
Pages
435 - 443
Database
ISI
SICI code
1615-9314(200107)24:6<435:TNESOR>2.0.ZU;2-2
Abstract
An in-house assembled electrochromatograph was used for temperature-control led non-aqueous electrochromatography. Reversed-phase separations of retiny l esters were performed on continuous bed columns. The continuous bed colum ns were prepared by sol-gel bonding of C-30 material in 180 mum internal di ameter fused silica capillaries. The mobile phase consisted of 2.5 mM lithi um acetate in N,N-dimethylformamide-acetonitrile-methanol (2 + 7 + 1, v/v). The use of temperature programming increased the resolution of earlier-elu ting compounds as well as improved the peak shape and decreased the retenti on time of later-eluting compounds. Separations of retinyl esters (all-tran s-retinyl acetate, palmitate, heptadecanoate, stearate, oleate, and linolea te) were completed in 12 minutes. The within-day and between-day variations of retention times of all-trans-retinyl palmitate were <0.6% (n = 6) relat ive standard deviation (RSD) and 2.3% (n = 3) RSD, respectively. Further, t he within-day and between-day variations of peak areas were <2.7% (n = 6) R SD, and 3.4% (n = 3) RSD, respectively. The column examined was stable for more than two weeks of continuous injections of standard solutions and real samples. Lipid extracts of bearded seal (Erignathus barbatus) liver were a nalyzed.