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首页> 外文期刊>ACS applied materials & interfaces >Gold Nanoparticle-Coated Starch Magnetic Beads for the Separation, Concentration, and SERS-Based Detection of E. coli O157:H7
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Gold Nanoparticle-Coated Starch Magnetic Beads for the Separation, Concentration, and SERS-Based Detection of E. coli O157:H7

机译:用于分离,浓度和基于SERS的大肠杆菌O157:H7的基于SERS的金纳米粒子涂层淀粉磁珠:H7

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摘要

Here, we report gold nanoparticle-coated starch magnetic beads (AuNP@SMBs) that were prepared by in situ synthesis of AuNPs on the surface of SMBs. Upon functionalization of the surface with a specific antibody, the immuno-AuNP@SMBs were found to be effective in separating and concentrating the target pathogenic bacteria, Escherichia coli O157:H7, from an aqueous sample as well as providing a hotspot for surface-enhanced Raman scattering (SERS)-based detection. We employed a bifunctional linker protein, 4x gold-binding peptide-tagged Streptococcal protein G (4GS), to immobilize antibodies on AuNP@SMBs and AuNPs in an oriented form. The linker protein also served as a Raman reporter, exhibiting a strong and unique fingerprint signal during the SERS measurement. The amplitude of the SERS signal was shown to have a good correlation with the concentration of target bacteria ranging from 100 to 105 CFU/mL. The detection limit was determined to be as low as a single cell, and the background signals derived from nontarget bacteria were negligible due to the excellent specificity and colloidal stability of the immuno-AuNP@SMBs and SERS tags. The highly sensitive nature of the SERS-based detection system will provide a promising means to detect the pathogenic microorganisms in food or clinical specimen.
机译:在这里,我们报告通过在SMBS表面上原位合成αUNP制备的金纳米粒子涂覆的淀粉磁珠(AUNP @ SMB)。在用特异性抗体的表面官能化后,发现免疫αUNP@SMBS有效地分离和浓缩靶致病细菌,从水性样品中分离和浓缩靶致病细菌,以及为表面增强的热点提供热点拉曼散射(SERS)基于检测。我们使用双官能接头蛋白,4倍的金结合肽标记的链球菌蛋白G(4gs),以以定向形式固定在AUNP @ SMB和AUNP上的抗体。接头蛋白还用作拉曼记者,在SERS测量期间表现出强大而独特的指纹信号。显示SERS信号的幅度与从100至105cfu / ml的靶细菌的浓度具有良好的相关性。检测限定为单个细胞低至单个细胞,由于免疫-AUNP @ SMB和SERS标签的优异特异性和胶体稳定性,源自Nontarget细菌的背景信号可忽略不计。基于SERS的检测系统的高度敏感性将提供一种有希望的方法来检测食物或临床标本中的病原微生物。

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