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Multiplexed sensing based on Brownian relaxation of magnetic nanoparticles using a compact AC susceptometer

机译:基于紧凑型交流电感受器的磁性纳米粒子布朗弛豫的多路复用传感

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摘要

A novel multiplexed sensing scheme based on the measurement of the magnetic susceptibility of the affinity captured target molecules on magnetic nanoparticles in liquid suspension is proposed. The AC magnetic susceptibility provides a measurement of Brownian relaxation behavior of biomolecules bound to magnetic nanoparticles (MNPs) that is related to its hydrodynamic size. A room temperature, compact AC susceptometer is designed and developed to measure complex AC magnetic susceptibility of such magnetic nanoparticles. The AC susceptometer exhibits high sensitivity in magnetic fields as low as 10 μT for 1 mg ml~(-1) concentration and 5 μl volume, and is fully software programmable. The capability of biological sensing using the proposed scheme has been demonstrated in proof of principle using the binding of biotinylated horseradish peroxidase (HRP) to streptavidin-coated MNPs. The proposed technique and instrument are readily compatible with lab-on-chip applications for point-of-care medical applications.
机译:提出了一种基于液体悬浮液中磁性纳米粒子上亲和捕获目标分子磁化率测量的新型多路传感方案。 AC磁化率提供了与磁性纳米颗粒(MNP)结合的生物分子的布朗弛豫行为的度量,该行为与其流体力学尺寸有关。设计并开发了室温紧凑的交流电磁化率仪,以测量此类磁性纳米粒子的复杂交流磁化率。交流电敏感器在1 mg ml〜(-1)浓度和5μl体积的低至10μT磁场中表现出高灵敏度,并且完全可以通过软件编程。使用生物素化的辣根过氧化物酶(HRP)与链霉亲和素包被的MNP的结合,在原理上证明了使用所提出的方案进行生物传感的能力。所提出的技术和仪器很容易与即时医疗应用的片上实验室应用兼容。

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