Multivariate analysis of organic acids in fermented food from reversed-phase high-performance liquid chromatography data.

Talanta

Laboratorio de Biotecnología e Inocuidad de los Alimentos. Municipalidad de Granadero Baigorria - Facultad de Ciencias Bioquímicas y Farmacéuticas (UNR, Universidad Nacional de Rosario), Suipacha 531, S2000LRK Rosario, Argentina; Instituto de Química de Rosario (IQUIR, UNR-CONICET), Suipacha 570, S2000LRK Rosario, Argentina.

Published: February 2018

Multivariate calibration coupled to RP-HPLC with diode array detection (HPLC-DAD) was applied to the identification and the quantitative evaluation of the short chain organic acids (malic, oxalic, formic, lactic, acetic, citric, pyruvic, succinic, tartaric, propionic and α-cetoglutaric) in fermented food. The goal of the present study was to get the successful resolution of a system in the combined occurrence of strongly coeluting peaks, of distortions in the time sensors among chromatograms, and of the presence of unexpected compounds not included in the calibration step. Second-order HPLC-DAD data matrices were obtained in a short time (10min) on a C18 column with a chromatographic system operating in isocratic mode (mobile phase was 20mmolL phosphate buffer at pH 2.20) and a flow-rate of 1.0mLmin at room temperature. Parallel factor analysis (PARAFAC) and unfolded partial least-squares combined with residual bilinearization (U-PLS/RBL) were the second-order calibration algorithms select for data processing. The performance of the analytical parameters was good with an outstanding limit of detection (LODs) for acids ranging from 0.15 to 10.0mmolL in the validation samples. The improved method was applied to the analysis of many dairy products (yoghurt, cultured milk and cheese) and wine. The method was shown as an effective means for determining and following acid contents in fermented food and was characterized by reducibility with simple, high resolution and rapid procedure without derivatization of analytes.

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http://dx.doi.org/10.1016/j.talanta.2017.09.005DOI Listing

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