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Core-Shell Magnetic Nanoparticles for Highly Sensitive Magnetoelastic Immunosensor

机译:用于高敏感的磁纳米粒子的核 - 壳磁性纳米粒子

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摘要

A magnetoelastic (ME) biosensor for wireless detection of analytes in liquid is described. The ME biosensor was tested against human IgG in the range 0–20 μg∙mL−1. The sensing elements, anti-human IgG produced in goat, were immobilized on the surface of the sensor by using a recently introduced photochemical immobilization technique (PIT), whereas a new amplification protocol exploiting gold coated magnetic nanoparticles (core-shell nanoparticles) is demonstrated to significantly enhance the sensitivity. The gold nanoflowers grown on the magnetic core allowed us to tether anti-human IgG to the nanoparticles to exploit the sandwich detection scheme. The experimental results show that the 6 mm × 1 mm × 30 μm ME biosensor with an amplification protocol that uses magnetic nanoparticles has a limit of detection (LOD) lower than 1 nM, works well in water, and has a rapid response time of few minutes. Therefore, the ME biosensor is very promising for real-time wireless detection of pathogens in liquids and for real life diagnostic purpose.
机译:描述了用于无线检测液体中分析物的磁性弹性(ME)生物传感器。将ME生物传感器对0-20μg∙ML-1的人IgG进行测试。通过使用最近引入的光化学固定技术(坑)在山羊中产生的感测元件,山羊的抗人IgG固定在传感器的表面上,而阐述了新的扩增方案利用金涂覆的磁性纳米颗粒(核心壳纳米粒子)显着提高灵敏度。在磁芯上生长的金纳米割草机使我们达到抗人IgG至纳米颗粒以利用夹层检测方案。实验结果表明,使用磁性纳米颗粒的扩增方案的6mm×1mm×30μmMeme生物传感器具有低于1nm的检测限(LOD),在水中运行良好,并且具有很快的响应时间分钟。因此,我的生物传感器非常有希望用于实时无线检测液体的病原体和实际诊断目的。

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