Journal of Liquid Chromatography & Related Technologies · 2017 · 13 citations · 17 references
EngineeringAmino AcidsPreparative ApplicationPostcolumn DerivatizationProtein PurificationFood ChemistrySeparation ScienceGas ChromatographyBioanalysisReaction FlowAnalytical ChemistryLiquid ChromatographyRf ColumnsChromatographyBiochemistryRf ChromatographyBiomedical AnalysisChromatographic AnalysisBiomolecular EngineeringFluorescence DetectionMass SpectrometryMedicine
Reaction flow (RF) chromatography with fluorescamine reagent and fluorescence detection (FLD) was used for the analysis of amino acids. The performance of RF chromatography was tested against several optimized conventional postcolumn derivatization (PCD) methods. RF columns achieved greater sensitivity compared to conventional PCD methods, without the need for reaction loops, which resulted in more efficient separations. The RF-PCD method also achieved limits of detection (LOD) from the low picomole to subnanomole range. The calibration data of the RF-PCD technique yielded R2 ≥ 0.99 and % relative standard deviation in peak areas ranging from 0.34% to 5%. Through reaction flow chromatography, multiplexed detection was also achieved allowing the monitoring and analysis of derivatized and nonderivatized flow streams simultaneously.
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Amino acid analysis with fluorescamine at the picomole level
S Stein, Peter Böhlen, James Stone et al. · Archives of Biochemistry and Biophysics · 1973 · 375 citations
Estimation of the Limit of Detection in Chromatography
J. Knoll · Journal of Chromatographic Science · 1985 · 214 citations