首页> 外文期刊>Journal of Cereal Science >HPLC determination of gamma amino butyric acid (GABA) and some biogenic amines (BAs) in controlled, germinated, and fermented brown rice by pre-column derivatization
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HPLC determination of gamma amino butyric acid (GABA) and some biogenic amines (BAs) in controlled, germinated, and fermented brown rice by pre-column derivatization

机译:HPLC通过柱前衍生化法测定受控,发芽和发酵糙米中的γ-氨基丁酸(GABA)和一些生物胺

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The gamma amino butyric acid (GABA) and biogenic amines (BAs) have great physiochemical importance due to their unique functions in human biological systems. The current study describes the investigation and separation of GABA and BAs including putrescine (PUT), cadaverine (CAD), dopamine (DOP), tyramine (TYRA), histamine (HIST), spermine (SPM) and spermidine (SPD) in some Pakistani brown rice. The GABA and BAs were analyzed in controlled, germinated and fermented conditions by using high performance liquid chromatographic (HPLC) technique after pre-column derivatization on a reversed phase C-8 column with diode-array detection at 230 nm. 2-Hydroxynaphthaldehyde was used as a pre-column derivatizing agent and the analytes were detected as Schiff base derivatives. A linear regression was found within 2.25-34.5 mu g/mL for the standards GABA and DOP, 1.15-28.5 mu g/mL for standards PUT, CAD, HIST, and 2.50-48.5 mu g/mL for standards TYRA, SPD, SPM with the correlation coefficient (r(2)) in the range of 0.997-0.998. GABA was detected in controlled, germinated and fermented samples, whereas analyzed biogenic amines were below the detection limit in controlled conditions and their concentration increased with the passage of germination time and also detected after the fermentation process. This method could be used for separation and quantification of GABA and other BAs simultaneously in food samples especially in cereal seeds during germination and fermentation to examine their levels. (C) 2015 Elsevier Ltd. All rights reserved.
机译:γ-氨基丁酸(GABA)和生物胺(BAs)由于其在人类生物系统中的独特功能而具有重要的物理化学意义。目前的研究描述了巴基斯坦一些地方的GABA和BA的调查和分离,包括腐胺(PUT),尸胺(CAD),多巴胺(DOP),酪胺(TYRA),组胺(HIST),精胺(SPM)和亚精胺(SPD)。糙米。在反相C-8色谱柱上进行预柱衍生后,在230 nm二极管阵列检测下,通过高效液相色谱(HPLC)在受控,发芽和发酵条件下分析GABA和BA。将2-羟基萘甲醛用作柱前衍生剂,并将分析物检测为席夫碱衍生物。对于GABA和DOP标准品,线性回归发现在2.25-34.5μg / mL之内;对于标准PUT,CAD,HIST,其线性回归在1.15-28.5μg/ mL中;对于TYRA,SPD,SPM标准品,线性回归在2.50-48.5μg / mL之间相关系数(r(2))在0.997-0.998之间。在对照,发芽和发酵的样品中检测到GABA,而在受控条件下分析的生物胺含量低于检测极限,其浓度随发芽时间的流逝而增加,并且在发酵过程后也被检测到。该方法可用于发芽和发酵过程中食品样品中GABA和其他BA的同时分离和定量,尤其是谷物种子中的GABA和其他BA。 (C)2015 Elsevier Ltd.保留所有权利。

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