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商用牛奶特异性侧向流动检测装置的评估

Evaluation of Commercial Milk-Specific Lateral Flow Devices.

作者信息

Courtney Rachel C, Taylor Steve L, Baumert Joe L

机构信息

Department of Food Science and Technology, Food Allergy Research and Resource Program, Room 279, Food Innovation Center, University of Nebraska-Lincoln, 1901 North 21st Street, P.O. Box 886207, Lincoln, Nebraska 68588-6207, USA.

出版信息

J Food Prot. 2016 Oct;79(10):1767-1774. doi: 10.4315/0362-028X.JFP-16-127.

Abstract

The requirement for validation of allergen cleaning processes is increasing. The use of lateral flow devices (LFDs) to identify allergens has rapidly expanded, but the best practices for use of these devices are still developing. The goal of this study was to compare commercially available milk-specific LFDs and a general protein identification method. Five milk proteins and seven milk-derived ingredients were tested at several concentrations with eight milk-specific LFDs and a general protein identification kit. Nonfat dry milk (NFDM) was prepared at 100 to 10,000 ppm of milk protein and analyzed by the LFDs to determine the concentration at which a false-negative result (overload concentration or hook effect) was obtained. NFDM was also prepared in 0.025 M phosphate-buffered saline (pH 7.4, 0.85% NaCl) and applied to stainless steel panels (100, 30, 10, or 3 μg of NFDM protein) with various drying methods and sampled with various swab methods to determine the level of detectability. Several total milk LFD kits did not detect whey proteins or whey-derived ingredients. The overload concentration of the various kits ranged from 100 to 10,000 ppm of milk protein. The small dynamic range observed for some kits would necessitate multiple dilutions of a sample to ensure that the result would fall within the range of detection. For swab sampling of stainless steel for LFD analysis, milk protein residues from surfaces onto which the residues were dried with high heat were more difficult to detect than were residues dried with low heat. No differences in sensitivity were observed as a result of moistening the residue or the swab before sampling. These results highlight the importance of understanding the detection capabilities of LFDs as indicated by the variability in the performance of the milk-specific LFDs tested.

摘要

对过敏原清洁过程进行验证的要求日益提高。侧向流动检测装置(LFDs)用于识别过敏原的应用迅速扩大,但这些装置的最佳使用方法仍在不断发展。本研究的目的是比较市售的牛奶特异性LFDs和一种通用蛋白质鉴定方法。用8种牛奶特异性LFDs和一种通用蛋白质鉴定试剂盒对5种牛奶蛋白和7种牛奶衍生成分在几种浓度下进行了测试。制备了蛋白质含量为100至10000 ppm的脱脂奶粉(NFDM),并用LFDs进行分析,以确定获得假阴性结果(过载浓度或钩状效应)时的浓度。还在0.025 M磷酸盐缓冲盐水(pH 7.4,0.85% NaCl)中制备了NFDM,并将其应用于不锈钢板(100、30、10或3 μg NFDM蛋白),采用不同的干燥方法和不同的拭子采样方法进行采样,以确定可检测水平。几种全牛奶LFD试剂盒未检测到乳清蛋白或乳清衍生成分。各种试剂盒的过载浓度范围为牛奶蛋白的100至10000 ppm。观察到一些试剂盒的动态范围较小,这就需要对样品进行多次稀释,以确保结果落在检测范围内。对于用于LFD分析的不锈钢拭子采样,与低热干燥的残留物相比,高热干燥表面上的牛奶蛋白残留物更难检测。采样前对残留物或拭子进行湿润处理,未观察到灵敏度差异。这些结果突出了了解LFDs检测能力的重要性,如所测试的牛奶特异性LFDs性能的变异性所示。

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