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A Portable and Autonomous Magnetic Detection Platform for Biosensing

机译:用于生物传感的便携式自主磁检测平台

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摘要

This paper presents a prototype of a platform for biomolecular recognition detection. The system is based on a magnetoresistive biochip that performs biorecognition assays by detecting magnetically tagged targets. All the electronic circuitry for addressing, driving and reading out signals from spin-valve or magnetic tunnel junctions sensors is implemented using off-the-shelf components. Taking advantage of digital signal processing techniques, the acquired signals are processed in real time and transmitted to a digital analyzer that enables the user to control and follow the experiment through a graphical user interface. The developed platform is portable and capable of operating autonomously for nearly eight hours. Experimental results show that the noise level of the described platform is one order of magnitude lower than the one presented by the previously used measurement set-up. Experimental results also show that this device is able to detect magnetic nanoparticles with a diameter of 250 nm at a concentration of about 40 fM. Finally, the biomolecular recognition detection capabilities of the platform are demonstrated by performing a hybridization assay using complementary and non-complementary probes and a magnetically tagged 20mer single stranded DNA target.
机译:本文提出了用于生物分子识别检测平台的原型。该系统基于磁阻生物芯片,该芯片通过检测磁性标记的靶标执行生物识别测定。用于寻址,驱动和读取自旋阀或磁性隧道结传感器的信号的所有电子电路均使用现成的组件实现。利用数字信号处理技术,对采集到的信号进行实时处理,并将其传输到数字分析仪,使用户能够通过图形用户界面控制和跟踪实验。开发的平台是便携式的,能够自主运行近八个小时。实验结果表明,所描述平台的噪声水平比以前使用的测量设置所显示的噪声水平低一个数量级。实验结果还表明,该设备能够以约40 fM的浓度检测直径250 nm的磁性纳米颗粒。最后,通过使用互补和非互补探针以及磁性标记的20mer单链DNA靶标进行杂交测定,证明了该平台的生物分子识别检测能力。

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