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Affinity capture using peptide-functionalized magnetic nanoparticles to target Staphylococcus aureus

机译:亲和捕获使用peptide-functionalized磁性纳米颗粒用于目标葡萄球菌葡萄球菌

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摘要

Staphylococcus aureus, a commonly found pathogen, can cause food poisoning and infections. Thus, it is necessary to develop analytical methods for the rapid screening of S. aureus in suspicious samples. Magnetic nanoparticles (MNPs) are widely used as affinity probes to selectively enrich target species from complex samples because of their high specific surface area and magnetic properties. The MNP surface should be functionalized to have the capability to target specific species. We herein propose a straightforward method to functionalize aluminum oxide-coated iron oxide (Fe3O4@Al2O3) MNPs with the peptide HHHHHHDEEGLFVD (D). The peptide D was comprised of three domains: polyhistidine (H-6) used as the linker, DEE added as the spacer, and GLFVD used for targeting S. aureus. D was immobilized on the surface of Fe3O4@Al2O3 MNPs through H-6-Al chelation. Our results showed that the D-functionalized Fe3O4@Al2O3 MNPs (D-Fe3O4 MNPs) possess the capability to target S. aureus. The selective trapping experiments were conducted under microwave-heating for only 60 s, and sufficient bacterial cells were trapped by the MNPs to be identified by matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS). We demonstrated that the D-Fe3O4@Al2O3 MNPs combined with MALDI-MS can be used to rapidly characterize trace amounts of S. aureus in complex juice and egg samples.
机译:金黄色葡萄球菌,常见病原体,可能导致食物中毒和感染。有必要开发分析方法金黄色葡萄球菌的快速筛查可疑样本。作为亲和探针选择性丰富因为目标物种从复杂样品高的比表面积和磁性属性。功能化有能力目标特定的物种。简单的方法使职能化铝敷氧化物铁氧化物(Fe3O4@Al2O3)和基于肽HHHHHHDEEGLFVD肽D (D)。组成的三个领域:polyhistidine (6)用作链接器,迪添加垫片,GLFVD用于针对金黄色葡萄球菌。表面的固定化Fe3O4@Al2O3和基于通过H-6-Al螯合。的D-functionalized Fe3O4@Al2O3基于(D-Fe3O4基于)拥有的能力目标金黄色葡萄球菌。选择性捕获实验在微波加热下只有60年代,足够的细菌细胞被困的基于由matrix-assisted激光标识解吸电离质谱(MALDI-MS)。D-Fe3O4@Al2O3基于结合MALDI-MS用于快速确定微量的年代。葡萄球菌在复杂的果汁和鸡蛋样品。

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