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Hydrolysis of β-glucan

机译:β-葡聚糖的水解

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The acid and enzymatic hydrolyses of oat β-glucan were compared for commercial oat β-glucan and β-glucan isolated from oat grain and oat bran. The resulting mono- and oligosaccharides were analysed by high-performance anion-exchange chromatography, combined with pulsed amperometric detection. The acid hydrolysis was studied with HCl, TFA and H_2SO_4 at two concentrations, with three durations of hydrolysis and at three temperatures. Under the mildest acid conditions (37℃ and pH 1, corresponding to those in the human stomach) no degradation of β-glucan was observed with HCl over a 12 h period. At 120℃, total hydrolysis to glucose occurred with high-concentration acids. Total recovery was also achieved with lichenase hydrolysis. Hydrolysis, with lichenase and β-glucosidase together, produced glucose, which was analysed spectrophotometrically according to the AOAC 995.16 method. Since the results with the original method were not satisfactory, the method was further modified to determine the best conditions for samples with high β-glucan content and poor solubility.
机译:比较了燕麦β-葡聚糖的酸水解和酶水解与从燕麦粒和燕麦麸中分离得到的商业燕麦β-葡聚糖和β-葡聚糖的比较。通过高效阴离子交换色谱结合脉冲安培检测对所得的单糖和寡糖进行分析。用HCl,TFA和H_2SO_4两种浓度,三种水解时间和三种温度对酸水解进行了研究。在最适度的酸性条件下(37℃和pH 1,对应于人的胃中的条件),在12小时内未观察到HCl降解β-葡聚糖。在120℃时,高浓度的酸将总水解成葡萄糖。地衣酶水解也可实现总回收率。地衣酶和β-葡萄糖苷酶一起水解产生葡萄糖,然后根据AOAC 995.16方法进行分光光度法分析。由于原始方法的结果不令人满意,因此对该方法进行了进一步修改,以确定具有高β-葡聚糖含量和不良溶解性的样品的最佳条件。

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