Redruello Begoña, Ladero Victor, Del Rio Beatriz, Fernández María, Martin M C, Alvarez Miguel A
Dairy Research Institute (IPLA-CSIC), 33300 Villaviciosa, Asturias, Spain.
Food Chem. 2017 Feb 15;217:117-124. doi: 10.1016/j.foodchem.2016.08.040. Epub 2016 Aug 16.
This paper reports a novel UHPLC method for simultaneously quantifying nine biogenic amines, 21 amino acids, and ammonium ions, in beer. Precision values of standard curves slopes were lower than 3.4% and recovery was between 85% and 106%, indicating the absence of matrix effect. Linear calibration curves were obtained for analyte concentrations between two and four orders of magnitude (R(2)>0.996). Repeatability tests returned mean variations of 3.2% and 0.5% for beer and a standard solution, respectively. Sensitivity ranged between 0.03mg/L and 0.63mg/L for the biogenic amines, and 0.05mg/L and 5.19mg/L for other compounds. Original data on the habitual presence of ethanolamine in beers are presented. The method allows for more samples to be assayed per unit time, it uses less solvent than other techniques and therefore reduces costs and the associated waste. It could be a valuable tool for monitoring the safety and quality of beers.
本文报道了一种用于同时定量啤酒中9种生物胺、21种氨基酸和铵离子的新型超高效液相色谱法。标准曲线斜率的精密度值低于3.4%,回收率在85%至106%之间,表明不存在基质效应。对于浓度在两个到四个数量级之间的分析物,获得了线性校准曲线(R(2)>0.996)。重复性测试表明,啤酒和标准溶液的平均变化分别为3.2%和0.5%。生物胺的灵敏度范围为0.03mg/L至0.63mg/L,其他化合物的灵敏度范围为0.05mg/L至5.19mg/L。文中给出了啤酒中乙醇胺习惯性存在的原始数据。该方法允许在单位时间内分析更多样品,与其他技术相比使用的溶剂更少,因此降低了成本和相关废物。它可能是监测啤酒安全性和质量的有价值工具。