首页> 外文期刊>Journal of food protection >Carbohydrate Ligands on Magnetic Nanoparticles for Centrifuge-Free Extraction of Pathogenic Contaminants in Pasteurized Milk
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Carbohydrate Ligands on Magnetic Nanoparticles for Centrifuge-Free Extraction of Pathogenic Contaminants in Pasteurized Milk

机译:磁性纳米颗粒上的碳水化合物配体,用于无离心法提取巴氏杀菌牛奶中的致病污染物

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Rapid detection of bacterial contamination in the food supply chain is critically important for food safety monitoring. Reliable extraction and concentration of bacteria from complex matrices is required to achieve high detection sensitivity, especially in situations of low contamination and infective dose. Carbohydrate ligands that attach to microbial cell-surface epitopes are promising economical and biocompatible substitutes for cell-targeting ligands and antibodies. Two different carbohydrate ligands immobilized onto magnetic nanoparticles (MNPs) were easily suspended in liquid food (milk) and allowed expedient extraction of microbes within minutes, without the need for centrifugation or loss in capture capacity. In this pilot study, 25-mL samples of undiluted milk were spiked with 5 mg of MNPs and artificially contaminated with bacteria at 3 to 5 log CFU/mL. MNPs and bacteria formed MNP-cell complexes, which were rapidly separated from the milk matrix with a simple magnet to allow supernatant removal. MNP-cell complexes were then concentrated by resuspension in 1 mL of fresh milk and plated per Bacteriological Analytical Manual procedures. Capture was carried out in vitamin D, 2% reduced fat, and fat-free milk spiked with Salmonella Enteritidis, Escherichia coli O157:H7, and Bacillus cereus for a combined total of 18 experiments (three replicates each). An additional eight experiments were conducted to investigate the effect of competitive bacteria on capture. All experiments were carried out over several months to account for environmental variations. Capture efficiency, on a log basis, for all combinations of milk and bacteria was 73 to 90%. Long-term exposure of the MNPs to milk did not markedly affect capture efficiency. These carbohydrate-functionalized MNPs have potential as nonspecific receptors for rapid extraction of bacteria from complex liquids, opening the door to discovery of biocompatible ligands that can reliably target pathogens in our food.
机译:快速检测食品供应链中的细菌污染对于食品安全监控至关重要。需要从复杂基质中可靠地提取和浓缩细菌,以实现高检测灵敏度,尤其是在低污染和感染剂量的情况下。附着在微生物细胞表面抗原决定簇上的碳水化合物配体是有望成为细胞靶向配体和抗体的经济且生物相容的替代品。固定在磁性纳米颗粒(MNP)上的两种不同的碳水化合物配体很容易悬浮在液体食品(牛奶)中,并允许在几分钟内方便地提取微生物,而无需进行离心分离或损失捕获能力。在该初步研究中,将25 mL的未稀释牛奶样品加5 mg MNP,并以3-5 log CFU / mL的浓度人工污染细菌。 MNP和细菌形成MNP-细胞复合物,可通过简单的磁铁将其与牛奶基质快速分离,以去除上清液。然后将MNP细胞复合物通过重悬于1 mL新鲜牛奶中进行浓缩,并按照《细菌学分析手册》中的步骤进行铺板。在维生素D,降低2%的脂肪和掺入肠炎沙门氏菌,大肠杆菌O157:H7和蜡状芽孢杆菌的无脂牛奶中进行捕获,总共进行18个实验(每个实验重复3次)。进行了另外八个实验,以研究竞争细菌对捕获的影响。为了解决环境变化,所有实验均进行了数月。对数形式的所有牛奶和细菌组合的捕获效率为73%至90%。 MNPs长期暴露于牛奶中并没有明显影响捕获效率。这些由碳水化合物官能化的MNP具有作为非特异性受体的潜力,可以从复杂的液体中快速提取细菌,从而为发现可以可靠地靶向食物中病原体的生物相容性配体打开了大门。

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