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Giant Magnetoresistive Biosensors for Time-Domain Magnetorelaxometry: A Theoretical Investigation and Progress Toward an Immunoassay

机译:时域磁弹性测定的巨型磁阻生物传感器:免疫测定的理论研究和进展。

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摘要

Magnetorelaxometry (MRX) is a promising new biosensing technique for point-of-care diagnostics. Historically, magnetic sensors have been primarily used to monitor the stray field of magnetic nanoparticles bound to analytes of interest for immunoassays and flow cytometers. In MRX, the magnetic nanoparticles (MNPs) are first magnetized and then the temporal response is monitored after removing the magnetic field. This new sensing modality is insensitive to the magnetic field homogeneity making it more amenable to low-power portable applications. In this work, we systematically investigated time-domain MRX by measuring the signal dependence on the applied field, magnetization time, and magnetic core size. The extracted characteristic times varied for different magnetic MNPs, exhibiting unique magnetic signatures. We also measured the signal contribution based on the MNP location and correlated the coverage with measured signal amplitude. Lastly, we demonstrated, for the first time, a GMR-based time-domain MRX bioassay. This approach validates the feasibility of immunoassays using GMR-based MRX and provides an alternative platform for point-of-care diagnostics.
机译:磁通量测定法(MRX)是一种有前途的新型生物传感技术,可用于即时诊断。历史上,磁性传感器主要用于监测与感兴趣的分析物结合的磁性纳米颗粒的杂散场,以用于免疫测定和流式细胞仪。在MRX中,首先将磁性纳米粒子(MNP)磁化,然后在去除磁场后监视时间响应。这种新的感应方式对磁场均匀性不敏感,使其更适合低功率便携式应用。在这项工作中,我们通过测量信号对施加磁场,磁化时间和磁芯尺寸的依赖性,系统地研究了时域MRX。提取的特征时间对于不同的磁性MNP有所不同,表现出独特的磁性特征。我们还根据MNP位置测量了信号贡献,并将覆盖范围与测量的信号幅度相关联。最后,我们首次展示了基于GMR的时域MRX生物测定法。这种方法验证了使用基于GMR的MRX进行免疫测定的可行性,并提供了即时诊断的替代平台。

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