Department of Analytical Chemistry, University of Turin, Torino, Italy.
Anal Chim Acta. 2010 Dec 3;682(1-2):104-9. doi: 10.1016/j.aca.2010.09.045. Epub 2010 Oct 8.
A quantitative lateral flow immunoassay for measuring fumonisins in maize was developed. Strip preparation and assay parameters were optimized to obtain a dipstick usable outside the laboratory with different samples, and which shows performance comparable with that of other screening methods, as confirmed by the intra- and the inter-day precision of data (RSD 5-16%). Quantification was obtained by an external calibration curve, which can be stored and used for measurements made with strips of the same batch in different days and at varying temperatures (22-37°C). Limit of detection (120 μgL(-1)) and dynamic range (200-5000 μgL(-1)) allow the direct assessment of fumonisin contamination at all levels of regulatory relevance. Twenty-seven maize samples were analyzed after a simple sample preparation which avoids the use of organic solvent. Linear correlation was observed (y=1.071x-0.2, r(2)=0.990) when data was compared with that obtained through a reference LC-MS/MS method, across a wide range of fumonisin contamination.
建立了一种用于检测玉米中伏马菌素的定量侧向流动免疫分析方法。优化了条带制备和分析参数,以获得一种可在实验室外使用的检测棒,适用于不同的样品,并且其性能可与其他筛选方法相媲美,这一点通过数据的日内和日间精密度(RSD 5-16%)得到了证实。通过外部校准曲线进行定量,该曲线可以存储并用于在不同日期和不同温度(22-37°C)下对同一批次的条带进行测量。检测限(120 μgL(-1))和动态范围(200-5000 μgL(-1))允许直接评估监管相关的所有水平的伏马菌素污染。在避免使用有机溶剂的简单样品制备后,分析了 27 个玉米样品。当将数据与通过参考 LC-MS/MS 方法获得的数据进行比较时,观察到了广泛的伏马菌素污染范围内的线性相关性(y=1.071x-0.2,r(2)=0.990)。