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A miniaturized AC magnetic susceptometer for detecting biomolecules tagged to magnetic nanoparticles

机译:用于检测标记为磁性纳米颗粒的生物分子的小型化交流磁性磁性磁性磁性磁性磁性磁性磁性磁化力学

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We demonstrate a miniaturized AC magnetic susceptometer to detect biomolecules tagged to magnetic nanoparticles (MNPs). The proposed compact susceptometer measures the magnetic relaxation spectrum of biomolecules tagged with MNPs in an aqueous suspension. The relaxation time corresponds to the Brownian relaxation time and depends on the hydrodynamic size of the MNPs. Conventional susceptometers are bulky, expensive and are designed for extreme conditions (e.g. low temperature or high DC magnetic field). Our handheld prototype is composed of AC current source, precise millimeter sized differential sensing coils, and a ultra-sensitive lock-in amplifier. The performances were verified for 15, 25nm Fe_3O_4-COOH MNPs suspended in solution. The result for each sample show the peak frequency of imaginary susceptibility is inversely proportional to effective hydrodynamic size of MNPs.
机译:我们展示了一种小型化的交流磁性敏感仪,以检测标记为磁性纳米颗粒(MNP)的生物分子。所提出的紧凑型电压仪测量在含水悬浮液中标记用MnP的生物分子的磁性弛豫谱。放松时间对应于布朗弛豫时间,并取决于MNP的流体动力学尺寸。传统的感斯计是笨重的,昂贵的,并且设计用于极端条件(例如低温或高直流磁场)。我们的手持式原型由AC电流源,精确毫米尺寸的差分传感线圈和超敏感锁放大器组成。验证了性能15,25nm FE_3O_4-COOH MNPS悬浮在溶液中。每个样品的结果显示假想敏感性的峰值频率与MNP的有效流体动力学大小成反比。

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