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A smart sealed nucleic acid biosensor based on endogenous reference gene detection to screen and identify mammals on site

机译:基于内源参考基因检测的智能密封核酸生物传感器用于现场筛选和鉴定哺乳动物

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摘要

The identification of meat adulteration is a hotspot for food research worldwide. In this paper, a smart and sealed biosensor that combines loop-mediated isothermal amplification (LAMP) with a lateral flow device (LFD) was developed, resulting in the universal mammalian assessment on site. First, the highly specific chromosomal Glucagon gene (Gcg) was chosen as the endogenous reference gene, and the LAMP approach provided double-labeled duplex DNA products using FITC- and BIO- modified primers. Then, an LFD strategy was used for specific signal recognition through an immunoassay. Meanwhile, LFD-LAMP was compared to LAMP and real-time LAMP, the results showed consistent high specificity and sensitivity but in a more convenient and easy-to-use system. In addition, the detection limit was as low as 10 pg, which was equivalent to 3~5 copies in mammals. All of the reactions were performed in a sealed system regardless of the amplification process or products recognized. Therefore, the smart design demonstrated significantly high specificity and the ability to detect trace amounts of DNA in complex and processed foods with mammalian meat. As a universal and specific platform for the detection of mammalian DNA, this smart biosensor is an excellent prospect for species identification and meat adulteration.
机译:肉类掺假的鉴定是全世界食品研究的热点。在本文中,开发了一种智能且密封的生物传感器,该传感器将环介导的等温扩增(LAMP)与侧向流动装置(LFD)结合在一起,从而在现场进行了普遍的哺乳动物评估。首先,选择高度特异性的染色体胰高血糖素基因(Gcg)作为内源参考基因,LAMP方法使用FITC和BIO修饰的引物提供了双标记的双链DNA产物。然后,LFD策略用于通过免疫测定进行特异性信号识别。同时,将LFD-LAMP与LAMP和实时LAMP进行了比较,结果显示出一致的高特异性和灵敏性,但在一个更方便易用的系统中。此外,检出限低至10μgpg,相当于哺乳动物的3〜5个拷贝。所有反应均在密闭系统中进行,而与扩增过程或产物识别无关。因此,该智能设计具有很高的特异性,并且能够检测带有哺乳动物肉的复杂食品和加工食品中的痕量DNA。作为用于检测哺乳动物DNA的通用且特定的平台,这种智能生物传感器为物种识别和肉品掺假提供了极好的前景。

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