Direct chromatographic resolution of carnitine and O-acylcarnitine enantiomers on a teicoplanin-bonded chiral stationary phase

R-(−)-Carnitine (vitamin B T) plays an important role in human energy metabolism, by facilitating the transport of long-chained fatty acids across the mitochondrial membranes. Its ( S)-enantiomer acts as a competitive inhibitor of carnitine acetyltransferase, causing depletion of the body R-(−)-carn...

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Veröffentlicht in:Journal of Chromatography A 1999-10, Vol.857 (1), p.145-155
Hauptverfasser: D’Acquarica, Ilaria, Gasparrini, Francesco, Misiti, Domenico, Villani, Claudio, Carotti, Angelo, Cellamare, Saverio, Muck, Sandra
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Sprache:eng
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Zusammenfassung:R-(−)-Carnitine (vitamin B T) plays an important role in human energy metabolism, by facilitating the transport of long-chained fatty acids across the mitochondrial membranes. Its ( S)-enantiomer acts as a competitive inhibitor of carnitine acetyltransferase, causing depletion of the body R-(−)-carnitine stock. Consequently, the separation of carnitine enantiomers is very important both to study their biological activities and to control the enantiomeric purity of pharmaceutical formulations. In the present paper we describe an easy, fast and convenient procedure for the separation of the enantiomers of carnitine and O-acylcarnitines by enantioselective HPLC on a laboratory-made chiral column containing covalently bonded teicoplanin as selector. High enantioselectivity factors ( α values ranging from 1.31 to 3.02) and short-time analyses characterize the analytical procedure; in addition, analytes are easily detected by evaporative light scattering with no need for preliminary derivatization. The effects of pH and ionic strength of the mobile phase and of the nature of the organic modifier on the enantioselective separations were also investigated.
ISSN:0021-9673
DOI:10.1016/S0021-9673(99)00773-6