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Development of a Sensitive Induction-Based Magnetic Nanoparticle Biodetection Method

机译:敏感诱导磁性纳米粒子生物匹配方法的研制

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摘要

We developed a novel biodetection method for influenza virus based on AC magnetic susceptibility measurement techniques (the DynoMag induction technique) together with functionalized multi-core magnetic nanoparticles. The sample consisting of an incubated mixture of magnetic nanoparticles and rolling circle amplified DNA coils is injected into a tube by a peristaltic pump. The sample is moved as a plug to the two well-balanced detection coils and the dynamic magnetic moment in each position is read over a range of excitation frequencies. The time for making a complete frequency sweep over the relaxation peak is about 5 minutes (10 Hz⁻10 kHz with 20 data points). The obtained standard deviation of the magnetic signal at the relaxation frequency (around 100 Hz) is equal to about 10−5 (volume susceptibility SI units), which is in the same range obtained with the DynoMag system. The limit of detection with this method is found to be in the range of 1 pM.
机译:基于AC磁性敏感性测量技术(Dynomag诱导技术)与官能化多芯磁性纳米颗粒一起开发了一种新的流感病毒的新型生物渗透方法。由磁性纳米颗粒和滚动圆的孵育混合物组成的样品通过蠕动泵注入管中。将样品作为插头移动到两个良好平衡的检测线圈,并且在一系列励磁频率上读取每个位置的动态磁矩。在松弛峰值上进行完整频率扫描的时间约为5分钟(10Hz⁻10KHz,20 kHz 20个数据点)。所获得的磁信号在弛豫频率(约100Hz)处获得的标准偏差等于约10-5(体积敏感性Si单元),其在用Dynomag系统获得的相同范围内。发现该方法的检测极限在下午1点的范围内。

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