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食品中葡萄糖、果糖、蔗糖及菊粉/低聚果糖的酶法分光光度测定

Enzymatic, spectrophotometric determination of glucose, fructose, sucrose, and inulin/oligofructose in foods.

作者信息

Steegmans Monique, Iliaens Saskia, Hoebregs Hubert

机构信息

Orafti, Analytical Services, Aandorenstraat 1, B-3300 Tienen, Belgium.

出版信息

J AOAC Int. 2004 Sep-Oct;87(5):1200-7.

Abstract

A fast, simple, and accurate method, using only standard laboratory equipment, was developed for the quantification of glucose, fructose, sucrose, and inulin/oligofructose in different food matrixes. Samples were extracted using boiling water and hydrolyzed with sucrase and fructanase. Sugars were determined in the initial extract and in both hydrolysates using an enzymatic, spectrophotometric kit for glucose and fructose determination with hexokinase, glucose-6-phosphate dehydrogenase, and phosphoglucose isomerase. Calculations of sucrose and inulin/oligofructose were based only on fructose measurement. Glucose results of the hydrolysates were not used for inulin/oligofructose calculations because of possible interference. Released glucose by the hydrolysis of maltose or by possible partial hydrolysis of other compounds like maltodextrines, starch, lactose, or maltitol could interfere in the measurement of the sucrase and the fructanase hydrolysates. To validate the method, a wide range of different food matrixes and different amounts of inulin/oligofructose (1-54%) were analyzed. Mean recovery +/- relative standard deviation (RSD) for inulin or oligofructose was 96.0 +/- 5.3%. The RSDr for inulin/oligofructose measured on 35 food samples, analyzed in duplicate, was 5.9%. Accuracy and precision of the method were less for samples with large concentrations of sucrose, maltose, maltodextrines, or starch (ratio to inulin/oligofructose >4 to 1). Precision and accuracy were comparable with those of the ion exchange chromatographic method AOAC 997.08 and the enzymatic, spectrophotometric method AOAC 999.03. In contrast to 999.03, this method allows the accurate quantification of both GFn and Fn forms.

摘要

开发了一种快速、简单且准确的方法,仅使用标准实验室设备即可对不同食品基质中的葡萄糖、果糖、蔗糖以及菊粉/低聚果糖进行定量分析。样品用沸水提取,并用蔗糖酶和果聚糖酶水解。使用含有己糖激酶、葡萄糖-6-磷酸脱氢酶和磷酸葡萄糖异构酶的酶促分光光度试剂盒,对初始提取物以及两种水解产物中的糖类进行测定。蔗糖和菊粉/低聚果糖的计算仅基于果糖的测量值。水解产物中的葡萄糖结果未用于菊粉/低聚果糖的计算,因为可能存在干扰。麦芽糖水解释放的葡萄糖或其他化合物(如麦芽糊精、淀粉、乳糖或麦芽糖醇)可能的部分水解所释放的葡萄糖,会干扰蔗糖酶和果聚糖酶水解产物的测量。为验证该方法,分析了多种不同的食品基质以及不同含量(1 - 54%)的菊粉/低聚果糖。菊粉或低聚果糖的平均回收率±相对标准偏差(RSD)为96.0±5.3%。对35个食品样品进行重复分析,测得菊粉/低聚果糖的相对标准偏差(RSDr)为5.9%。对于蔗糖、麦芽糖、麦芽糊精或淀粉浓度较高(与菊粉/低聚果糖的比例>4比1)的样品,该方法的准确度和精密度较低。其精密度和准确度与离子交换色谱法AOAC 997.08和酶促分光光度法AOAC 999.03相当。与999.03不同的是,该方法能够对GFn和Fn两种形式进行准确定量。

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