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Magnetic Nanoparticle-Based Platform for Characterization of Shiga-like Toxin 1 from Complex Samples

机译:基于磁性纳米粒子的平台,可从复杂样品中表征志贺样毒素1

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Foodbome illness outbreaks resulting from contamination of Escherichia call O157:H7 remain a serious concern in food safety. E. coli O157:H7 can cause bloody diarrhea, hemolytic uremic syndrome, or even death. The pathogenicity of E. coli O157:H7 is mainly caused by the expression of Shiga-like toxins (SLTs), i.e., SLT-1 and SLT-2. SLTs are pentamers composed of a single A and five B subunits. In this study, we propose a magnetic nanoparticle (MNP)-based platform to rapidly identify SLT-1 from the complex cell lysate of E. coli O157:H7. The core of the MNPs is made of iron oxide, whereas the surface of the core is coated with a thin layer of alumina (Fe3O4@Al2O3 MNPs). The Fe3O4@Al2O3 MNPs are functionalized with pigeon ovalbumin (POA), which contains Gal-alpha(1 -> 4)-Gal-beta(1 -> 4)-GlcNAc termini that can bind SLT-1B selectively. Furthermore, POA is a phosphate protein. Thus, it can be easily immobilized on the surface of the Fe3O4@Al2O3 MNPs through aluminum phosphate chelation under microwave heating within 1.5 min. The generated POA-Fe3O4@Al2O3 MNPs are capable of effectively enriching SLT-1B from complex cell lysates simply by pipetting 20 mu L, of the sample in and out of the tip in a vial for similar to 1 min. To release SLT-1 from the MNPs, Gal-alpha(1 -> 4)-Gal disaccharides were used for displacement. The released target species are sufficient to be identified by matrix-assisted laser desorption/ionization mass spectrometry. Although the sample volume used in this approach is small (20 mu L) and the enrichment time is short (1 mm), the selectivity of this approach toward SLT-1B is quite good. We have demonstrated the effectiveness of this approach for rapid determination of the presence of SLT-1 from complex cell lysates and ham/juice samples based on the detection of SLT-1B.
机译:由大肠杆菌(O157:H7)污染导致的食品疫病暴发仍然是食品安全中的一个严重问题。大肠杆菌O157:H7可能引起血性腹泻,溶血性尿毒症综合征甚至死亡。大肠杆菌O157:H7的致病性主要是由志贺样毒素(SLTs),即SLT-1和SLT-2的表达引起的。 SLT是由单个A和五个B亚基组成的五聚体。在这项研究中,我们提出了一个基于磁性纳米粒子(MNP)的平台,可以从大肠杆菌O157:H7的复杂细胞裂解物中快速鉴定SLT-1。 MNP的芯由氧化铁制成,而芯的表面覆盖有一层氧化铝薄层(Fe3O4 @ Al2O3 MNP)。 Fe3O4 @ Al2O3 MNPs用鸽子卵白蛋白(POA)功能化,该蛋白包含可以选择性结合SLT-1B的Gal-alpha(1-> 4)-Gal-beta(1-> 4)-GlcNAc末端。此外,POA是磷酸蛋白。因此,可以在微波加热下,在1.5分钟内通过磷酸铝螯合将其轻松固定在Fe3O4 @ Al2O3 MNP的表面上。所产生的POA-Fe3O4 @ Al2O3 MNP能够通过简单地在小瓶中从尖端吸进和吸出20μL样品,有效地从复杂的细胞裂解物中富集SLT-1B,时间约为1分钟。为了从MNP中释放SLT-1,将Gal-alpha(1→4)-Gal二糖用于置换。释放的目标物质足以通过基质辅助激光解吸/电离质谱法进行鉴定。尽管此方法中使用的样品量很小(20μL),富集时间很短(1 mm),但此方法对SLT-1B的选择性很好。我们已经证明了这种方法在检测SLT-1B的基础上,可以快速确定复杂细胞裂解液和火腿/果汁样品中SLT-1的存在的有效性。

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