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利用时间分辨荧光法测定小麦中赭曲霉毒素 A 的 DNA-配体系统的分析性能。

Analytical performances of a DNA-ligand system using time-resolved fluorescence for the determination of ochratoxin A in wheat.

机构信息

Institute of Sciences of Food Production, National Research Council of Italy, Bari, Italy.

出版信息

Anal Bioanal Chem. 2012 Jul;403(9):2627-34. doi: 10.1007/s00216-012-6076-6. Epub 2012 May 12.

Abstract

The analytical performances of a novel DNA-ligand system using the time-resolved fluorescence (TRF) response of ochratoxin A (OTA)-terbium-DNA aptamer interaction were tested for the quantitative determination of OTA in wheat. Wheat was extracted with acetonitrile/water (60:40, v/v) followed by clean-up through affinity columns containing a DNA-aptamer-based oligosorbent. Then, OTA was detected by TRF spectroscopy after reaction with a terbium fluorescent solution containing the DNA-aptamer probe. The entire procedure was performed in less than 30 min, including sample preparation, and allowed analysis of several samples simultaneously with a 96-well microplate reader. The average recovery from samples spiked with 2.5-25 μg kg(-1) OTA was 77%, with a relative standard deviation lower than 6% and a quantification limit of 0.5 μg kg(-1). Comparative analyses of 29 naturally contaminated (up to 14 μg kg(-1)) wheat samples using the aptamer-affinity column/TRF method or the immunoaffinity column/high-performance liquid chromatography method showed good correlation (r = 0.985) in the range tested. The trueness of the aptamer-based method was additionally assessed by analysis of two quality control wheat materials for OTA. The DNA-ligand system is innovative, simple and rapid, and can be used to screen large quantities of samples for OTA contamination at levels below the EU regulatory limit with analytical performances satisfying EU criteria for method acceptability.

摘要

采用新型 DNA-配体系统,利用赭曲霉毒素 A(OTA)-铽-DNA 适体相互作用的时间分辨荧光(TRF)响应,对小麦中 OTA 的定量测定进行了分析性能测试。小麦用乙腈/水(60:40,v/v)提取,然后通过含有基于 DNA-适体的寡聚吸附剂的亲和柱进行净化。然后,通过与含有 DNA-适体探针的铽荧光溶液反应,用 TRF 光谱法检测 OTA。整个过程在不到 30 分钟的时间内完成,包括样品制备,并允许同时使用 96 孔微孔板读取器分析多个样品。用 2.5-25μgkg(-1) OTA 加标样品的平均回收率为 77%,相对标准偏差低于 6%,定量限为 0.5μgkg(-1)。使用适体亲和柱/TRF 方法或免疫亲和柱/高效液相色谱法对 29 个受污染的天然小麦样品(高达 14μgkg(-1))进行比较分析,在测试范围内显示出良好的相关性(r=0.985)。通过对两种用于 OTA 的质量控制小麦材料的分析,进一步评估了基于 DNA 配体的方法的真实性。该 DNA-配体系统具有创新性、简单性和快速性,可用于筛选大量样品,以检测低于欧盟监管限量的 OTA 污染,其分析性能符合欧盟方法可接受性标准。

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