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The Development of Highly Specific and Sensitive Primers for the Detection of Potentially Allergenic Soybean (Glycine max) Using Loop-Mediated Isothermal Amplification Combined with Lateral Flow Dipstick (LAMP-LFD)

机译:环介导等温扩增结合侧向量油尺(LAMP-LFD)用于检测潜在致敏大豆(Glycine max)的高特异性和灵敏引物的开发

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摘要

The soybean ( ) has been recognized as a frequent elicitor of food allergy worldwide. A lack of causative immunotherapy of soybean allergy makes soybean avoidance essential. Therefore, sensitive and specific methods for soybean detection are needed to allow for soybean verification in foods. Loop-mediated isothermal amplification (LAMP) represents a rapid and simple DNA-based detection method principally suitable for field-like applications or on-site analytical screening for allergens during the manufacturing of foods. This work describes the systematic development and selection of suitable LAMP primers based on soybean multicopy genes. The chemistry applied allows for a versatile detection of amplified DNA, using either gel electrophoresis, fluorescence recording, or a simple Lateral Flow Dipstick (LFD). LAMP based on the gene was highly specific for the soybean and may allow for a detection level equivalent to approximately 10 mg soy per kg food. Various soybean cultivars were detectable at a comparable level of sensitivity. LAMP combined with LFD-like detection facilitates a simple, highly specific and sensitive detection of the soybean without the need for expensive analytical equipment. In contrast to the majority of antibody-based methods for soybean detection, all identified primer sequences and optimized protocols are disclosed and broadly available to the community.
机译:大豆()被公认为是全球食物过敏的常见诱因。缺乏对大豆过敏的病因免疫疗法,使避免大豆成为必不可少的。因此,需要用于检测大豆的灵敏且特定的方法来验证食品中的大豆。环介导的等温扩增(LAMP)代表了一种快速,简单的基于DNA的检测方法,该方法主要适用于食品制造过程中的现场应用或现场分析性过敏原。这项工作描述了系统开发和选择基于大豆多拷贝基因的LAMP引物。所应用的化学试剂可通过凝胶电泳,荧光记录或简单的横向量油尺(LFD)广泛检测扩增的DNA。基于该基因的LAMP对大豆具有高度特异性,因此检测水平相当于每公斤食品约10 mg大豆。可以在相当水平的灵敏度下检测到各种大豆品种。 LAMP与类似LFD的检测相结合,可实现对大豆的简单,高度特异性和灵敏的检测,而无需昂贵的分析设备。与用于大豆检测的大多数基于抗体的方法相反,所有已鉴定的引物序列和优化的方案均已公开,并广泛用于社区。

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