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Optimized one-pot derivatization and enantioseparation of cysteine: Application to the study of a dietary supplement.

Lucia Pucciarini, Giorgio Saluti, Roberta Galarini, Andrea Carotti, Antonio Macchiarulo et al.
Other Journal of pharmaceutical and biomedical analysis 2020 8 citazioni
PubMed DOI
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Study Design

Tipo di studio
Other
Popolazione
None
Durata
1 weeks
Intervento
Optimized one-pot derivatization and enantioseparation of cysteine: Application to the study of a dietary supplement. 1.0 mL
Comparatore
None
Esito primario
None
Direzione dell'effetto
Mixed
Rischio di bias
Unclear

Abstract

Cysteine is a sulfur-containing amino acid which plays an outstanding role in many biological pathways in mammals. The analysis and quantification of native cysteine remains a critical issue due to its highly reactive thiol group evolving to the disulfide cystine derivative through oxidation reaction. Aimed at improving the derivative stability, cysteine was labelled with 4-fluoro-7-nitro-2,1,3-benzoxadiazole (NBD-F), which reacts with both amino and thiol groups. The derivatization was optimized and the chemical identity of the reaction product was assessed via high-resolution mass spectrometry. The NBD-cysteine derivative resulted stable for 10 days. This derivative was enantioresolved (α and RS equal to 1.25 and 2.70, respectively) thanks to a (R,R)-Whelk-O1 phase with the following chromatographic setting: eluent, MeOH/water-90/10 (v/v) with 15 mM ammonium formate (pwsH 6.0); column temperature, 35 °C; flow rate, 1.0 mL/min. The developed method was validated following the ICH guidelines and applied for the quality control of a L-cysteine containing dietary supplement.

TL;DR

Aimed at improving the derivative stability, cysteine was labelled with 4-fluoro-7-nitro-2,1,3-benzoxadiazole (NBD-F), which reacts with both amino and thiol groups and was validated following the ICH guidelines and applied for the quality control of a L-cysteine containing dietary supplement.

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