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Fast and sensitive medical diagnostic protocol based on integrating circular current lines for magnetic washing and optical detection of fluorescent magnetic nanobeads

机译:基于集成圆形电流线的快速灵敏医学诊断协议,用于荧光磁纳米珠的磁洗和光学检测

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Abstract Magnetic nanoparticles (MNPs) are increasingly being used as ‘magnetic labels’ in medical diagnostics. Practical applications of {MNPs} necessitate reducing their non-specific interactions with sensor surfaces that result in noise in measurements. Here we describe the design and implementation of a sensing platform that incorporates circular shaped current lines that reduce non-specific binding by enabling the “magnetic washing” of loosely attached {MNPs} attached to the senor surface. Generating magnetic fields by passing electrical currents through the circular shaped current lines enabled the capture and collection of fluorescent {MNPs} that was more efficient and effective than straight current lines reported to-date. The use of fluorescent {MNPs} allows their optical detection rather than with widely used magnetoresistive sensors. As a result our approach is not affected by magnetic noise due to the flow of currents. Our design is expected to improve the speed, accuracy, and sensitivity of {MNPs} based medical diagnostics.
机译:摘要磁性纳米颗粒(MNP)越来越多地用作医学诊断中的“磁性标签”。 {MNP}的实际应用必须减少它们与传感器表面的非特异性相互作用,从而导致测量结果产生噪声。在这里,我们描述了一个感应平台的设计和实现,该平台结合了圆形电流线,该电流线通过对附着在传感器表面的松散附着的{MNPs“进行“磁洗”,从而减少了非特异性结合。通过使电流流过圆形电流线来产生磁场,使荧光{MNPs}的捕获和收集比迄今为止报道的直流电流线更有效。荧光{MNPs}的使用允许对其进行光学检测,而不是使用广泛使用的磁阻传感器。结果,由于电流的流动,我们的方法不受磁噪声的影响。我们的设计有望提高基于{MNPs}的医学诊断程序的速度,准确性和灵敏度。

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