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首页> 外文期刊>Frontiers in Nutrition >Dietary Sugars Analysis: Quantification of Fructooligossacharides during Fermentation by HPLC-RI Method
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Dietary Sugars Analysis: Quantification of Fructooligossacharides during Fermentation by HPLC-RI Method

机译:膳食糖分析:HPLC-RI法定量发酵过程中的低聚果糖

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In this work a simple chromatographic method is proposed and in-house validated for the quantification of total and individual fructooligossacharides (e.g., 1-kestose, nystose, and 1F-fructofuranosylnystose). It was shown that a high performance liquid chromatography with refractive index detector could be used to monitor the dynamic of fructooligossacharides production via sucrose fermentation using Aspergillus aculeatus This analytical technique may be easily implemented at laboratorial or industrial scale for fructooligossacharides mass-production monitoring allowing also controlling the main substrate (sucrose) and the secondary by-products (glucose and fructose). The proposed chromatographic method had a satisfactory intra- and inter-day variability (in general, with a relative standard deviation lower than 5%), high sensitivity for each sugar (usually, with a relative error lower than 5%), and low detection (lower than 0.06 ± 0.04 g/L) and quantification (lower than 0.2 ± 0.1 g/L) limits. The correct quantification of fructooligossacharides in fermentative media may allow a more precise nutritional formulation of new functional foods, since it is reported that different fructooligossacharides exhibit different biological activities and effects.
机译:在这项工作中,提出了一种简单的色谱方法,并在内部进行了验证,以定量总和单独的低聚果糖(例如1-甲酚,半乳糖和1F-呋喃呋喃糖基nystose)。结果表明,带有折光率检测器的高效液相色谱法可用于监测使用棘孢曲霉通过蔗糖发酵生产果糖寡糖的动态。该分析技术可在实验室或工业规模上轻松实施,用于果糖寡糖的大规模生产监控,从而还可以控制主要底物(蔗糖)和次要副产物(葡萄糖和果糖)。所提出的色谱方法具有令人满意的日内和日间变异性(通常,相对标准偏差低于5%),每种糖的灵敏度高(通常,相对误差低于5%)和检测率低(低于0.06±0.04 g / L)和定量(低于0.2±0.1 g / L)限值。由于据报道不同的低聚果糖表现出不同的生物学活性和作用,因此在发酵培养基中正确定量低聚果糖可能使新功能食品的营养配方更加精确。

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