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Quantitative biomolecular sensing station based on magnetoresistive patterned arrays

机译:基于磁阻图案阵列的定量生物分子传感站

摘要

The combination of magnetoresistive sensors and magnetic labeling of bioanalytes, which are selectively captured by their complementary antibody in the proximity of the sensor is a powerful method in order to attain truly quantitative immunological assays. In this paper we present a technical solution to exploit the existing spin valve technology to readout magnetic signals of bio-functionalized magnetic nanoparticles. The method is simple and reliable, and it is based on a discrete scan of lateral flow strips with a precise control of the contact force between sensor and sample. It is shown that the signal of the sensor is proportional to the local magnetization produced by the nanoparticles in a wide range of concentrations, and the sensitivity thresholds in both calibration samples and real immunorecognition assays of human chorionic gonadotropin hormone are well below the visual inspection limit (5.5. ng/ml). Furthermore the sample scanning approach and the reduced dimensions of the sensors provide unprecedented spatial resolution of the nanoparticle distribution across the supporting nitrocellulose strip, therefore enabling on-stick control references and multi-analyte capability. © 2012 Elsevier B.V.
机译:磁阻传感器和生物分析物的磁性标记相结合是一种强大的方法,可以实现真正的定量免疫分析,而磁标记物被传感器附近的互补抗体选择性捕获。在本文中,我们提出了一种技术解决方案,以利用现有的旋转阀技术来读取生物功能化磁性纳米颗粒的磁信号。该方法简单可靠,基于对侧向流动条的离散扫描,并精确控制传感器和样品之间的接触力。结果表明,传感器的信号与纳米粒子在很宽的浓度范围内产生的局部磁化强度成正比,并且绒毛膜促性腺激素激素的校准样品和实际免疫识别测定的灵敏度阈值均远低于目测极限(5.5。ng / ml)。此外,样品扫描方法和减小的传感器尺寸为支持硝化纤维素条带上的纳米颗粒分布提供了空前的空间分辨率,因此可实现棒上控制参考和多种分析物的功能。 ©2012 Elsevier B.V.

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