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A Simple HPLC Method for Determining the Purine Content of Beer and Beer-like Alcoholic Beverages

机译:一种简单的HPLC法测定啤酒和啤酒样酒精饮料中的嘌呤含量

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Several methods for quantifying the purine content in food and drink have been described using high-performance liquid chromatography (HPLC). We have developed an improved HPLC method that is based on a method reported by Kaneko et al. and that is more sensitive yet simple, and suitable for determining the purine content of beer and beer-like alcoholic beverages. Quantitative HPLC separation was performed on a Shodex Asahi Pak GS-320HQ column with an isocratic elution of 150 mmol/L sodium phosphate buffer (H3PO4/NaH2PO4 = 20:100 (v/v)). The retention times for the four analytes, namely, adenine, guanine, hypoxanthine and xanthine, were 19.9, 25.0, 29.3 and 43.0 min, respectively. The resolution was good, and there was no excessive interference from the other compounds in the beverages at these retention times. Furthermore, the detection limit for all the analytes was improved to less than 0.0075 mg/L, and all the calibration curves showed good linearity (r2 0.999) between 0.013 and 10 mg/L for adenine and guanine, and between 0.025 and 10 mg/L for hypoxanthine and xanthine. The pretreatment was simplified by removing some procedures and optimizing the perchloric acid hydrolysis and the enzymatic peak-shift assay. We reduced the sample dilution rate by almost 50%, and the time spent on pretreatment from 4 days to only 180 min. The recovery of the analytes from spiked samples was 94.8 – 103.8%. This method may be useful for evaluating quantitative and qualitative differences in the purine content of beer and beer-like alcoholic beverages.
机译:已经描述了使用高效液相色谱(HPLC)定量食物和饮料中嘌呤含量的几种方法。我们已经开发出一种改进的HPLC方法,该方法基于Kaneko等人的方法。灵敏度更高但更简单,适用于测定啤酒和类似啤酒的酒精饮料中的嘌呤含量。在Shodex Asahi Pak GS-320HQ色谱柱上进行HPLC定量分离,等度洗脱为150 mmol / L磷酸钠缓冲液(H3PO4 / NaH2PO4 = 20:100(v / v))。腺嘌呤,鸟嘌呤,次黄嘌呤和黄嘌呤这四种分析物的保留时间分别为19.9、25.0、29.3和43.0分钟。分离度很好,在这些保留时间,饮料中的其他化合物没有过多的干扰。此外,所有分析物的检出限提高到小于0.0075 mg / L,并且所有校准曲线均显示出良好的线性(r2> 0.999),腺嘌呤和鸟嘌呤介于0.013和10 mg / L之间,0.025和10 mg之间。 / L为次黄嘌呤和黄嘌呤。通过删除一些程序并优化高氯酸水解和酶促峰移测定,简化了预处理。我们将样品稀释率降低了近50%,而预处理所花费的时间从4天减少到只有180分钟。从加标样品中回收的分析物为94.8 – 103.8%。此方法对于评估啤酒和类似啤酒的酒精性饮料中嘌呤含量的定量和质量差异可能有用。

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