Comprehensive analysis of branched aliphatic d-amino acids in mammals using an integrated multi-loop two-dimensional column-switching high-performance liquid chromatographic system combining reversed-phase and enantioselective columns
A validated two-dimensional HPLC method for the comprehensive analysis of small quantities of branched aliphatic d-amino acids in the presence of large amounts of their l-congeners in mammalian tissues and physiological fluids is described. The quantitative analysis of these aliphatic amino acids (V...
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Veröffentlicht in: | Journal of Chromatography A 2007-03, Vol.1143 (1-2), p.105-111 |
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Sprache: | eng |
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Zusammenfassung: | A validated two-dimensional HPLC method for the comprehensive analysis of small quantities of branched aliphatic d-amino acids in the presence of large amounts of their l-congeners in mammalian tissues and physiological fluids is described. The quantitative analysis of these aliphatic amino acids (Val, allo-Ile, Ile, and Leu) is important for the diagnosis of various inherent metabolic disorders of amino acids, and the d-enantiomers are expected to be of particular interest from a pharmacological point of view. Target analytes were determined as their fluorescent derivatives, pre-column labeled with 4-fluoro-7-nitro-2,1,3-benzoxadiazole (NBD-F), using an automated two-dimensional column-switching high-performance liquid chromatographic system combining a narrow bore reversed-phase column and an enantioselective column connected with an integrated multi-loop peak fraction storage device. The described two-dimensional analysis concept proved to be successful for the given task in biological samples taken from mammals. Total analysis time for the reversed-phase separation of the four target NBD-amino acids is 60min, and the integrated enantiomer separation of each of the four analytes is completed in approximately 5min. In the rat, significant amounts of d-Leu were found in all tissues and physiological fluids tested (trace – 1.3nmol/g tissue), and in the urine, the presence of high amounts of d-allo-Ile (d-isomer of a non-proteinogenic amino acid, 22.2nmol/ml) was demonstrated. d-allo-Ile was also found in the urine of dog and mouse, which indicates the ubiquitous presence of this unusual d-amino acid and the potential need to clarify its unique metabolism in mammals. |
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ISSN: | 0021-9673 |
DOI: | 10.1016/j.chroma.2006.12.078 |