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Improvement of surface plasmon resonance biosensor with magnetic beads via assembled polyelectrolyte layers

机译:通过组装的聚电解质层改进了具有磁珠的表面等离子体激元共振生物传感器

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The conjugates of magnetic beads coupled with an antibody can be trapped on the Au film firmly due to the magnetic force for the immunoassay of a surface plasmon resonance (SPR) biosensor. However, thjg approach exhibits significant limitations in robustness and sensitivity due to incomplete dissociation of magnetic beads from the Au film. The incorporation of a polyelectrolyte film on the Au surface can prevent the magnetic beads from the direct contact with the Au film. The layer-by-layer assembly of polyelectrolyte was used as spacer between the gold surface and the magnetic bead. Different layers of polyelectrolyte can be assembled onto the Au film based on an electrostatic force between polycations and polyanions. After the polyelectrolyte film was fabricated on the Au film, the deposition of the magnetic beads was maintained effectively on the film, which favors the sensitivity of the biosensor and the regeneration of the sensing membrane. When the polyelectrolyte layers of (PAH/PSS)3 were constructed on the Au film, the SPR biosensor with magnetic beads exhibited a satisfactory response to human IgG in the concentration range from 0.25 to 30.00 μgmL~(-1), and the determination limit obtained is eight times lower than that obtained with (PAH/PSS)1 layer.
机译:由于用于表面等离振子共振(SPR)生物传感器免疫测定的磁力,与抗体偶联的磁珠结合物可以牢固地捕获在Au膜上。然而,由于磁珠与金膜的不完全解离,这种方法在鲁棒性和灵敏度方面显示出明显的局限性。在Au表面上并入聚电解质膜可以防止磁珠与Au膜直接接触。聚电解质的逐层组件用作金表面和磁珠之间的隔离物。可以基于聚阳离子和聚阴离子之间的静电力将不同层的聚电解质组装到Au膜上。在Au膜上制备聚电解质膜后,可有效保持磁珠在膜上的沉积,这有利于生物传感器的灵敏度和传感膜的再生。当在金膜上构建(PAH / PSS)3的聚电解质层时,带有磁珠的SPR生物传感器在0.25至30.00μgmL〜(-1)的浓度范围内对人IgG表现出令人满意的响应,并且测定极限所获得的结果比(PAH / PSS)1层获得的结果低八倍。

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