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Magnetic-particle based signal amplification method integrated with mobile-devices for low cost biosensing

机译:基于磁性粒子的信号放大方法与移动设备集成,用于低成本生物传感

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We present a signal amplification method for biosensing applications using magnetic particles. In this method, mobile devices and simple spherical glass beads are used as a low-cost microscope to detect magnetic particles. Magnetic particles have two main functions;;1) conventionally capture, separate and transport target molecules 2) form magnetic dipoles under an applied external magnetic field to attract other magnetized particles. When magnetic particles accumulate and form a cluster, the corresponding pixel area in the image taken by the simple microscope is increased resulting in signal amplification. Current focus of new generation biosensor research is to increase the sensitivity levels of the devices to compete with current lab analysis tools while inherently having other advantages such as being low-cost, portable and simple. Biosensors based on micro/nano magnetic particles use various measurement techniques and amplification methods. In order to fully benefit from the advantages of micro/nano technology based systems, measurement set up must be also portable and have high sensitivity. Mobile devices and applications are taking place in medical fields and have high potential for future. In this work mobile devices are employed as measurement setups for the magnetic particle based sensing and signal amplification. The amplification method is not based on bimolecular binding thus cost efficient. After the images of the magnetic particles are taken, these images are sent to cloud computing for analysis by the mobile device. Matlab codes run on cloud servers for processing the images. Finally results are received and displayed on the mobile device. The mobile device based imaging system is able to detect 7 μm size particles within a 1500 μm × 1500 μm area and magnetic bead accumulation resulted in at least 5-fold signal amplification. The applied magnetic field is approximately 15 mT and the cost of the system excluding mobile device is under 20 cents. The method is promising for immunomagnetic bead assisted biosensors.
机译:我们介绍了使用磁性颗粒的生物传感应用的信号放大方法。在该方法中,移动设备和简单的球形玻璃珠用作低成本显微镜以检测磁性颗粒。磁性颗粒具有两个主要功能;; 1)常规捕获,分离和运输靶分子2)在施加的外部磁场下形成磁偶极子以吸引其他磁化颗粒。当磁性粒子累积并形成簇时,通过简单显微镜拍摄的图像中的相应像素区域增加,导致信号放大。目前新一代生物传感器研究的重点是增加设备的灵敏度水平,以便与当前的实验室分析工具竞争,同时固有地具有其他优点,例如低成本,便携式和简单。基于微/纳米磁性颗粒的生物传感器使用各种测量技术和扩增方法。为了完全受益于微/纳米技术的系统的优点,测量设定必须是便携式的并且具有高灵敏度。移动设备和应用程序正在医疗领域进行,并具有很高的未来潜力。在该工作中,移动设备被用作基于磁性粒子的感测和信号放大的测量设置。扩增方法不是基于双分子结合因此的成本效率。在拍摄磁性粒子的图像之后,将这些图像被发送到云计算以进行移动设备的分析。 MATLAB代码在云服务器上运行,用于处理图像。最后,在移动设备上收到并显示结果。基于移动设备的成像系统能够检测在1500μm×1500μm区域内的7μm尺寸粒子,并且磁珠累积导致至少5倍的信号放大。所施加的磁场约为15吨,并且不包括移动设备的系统的成本低于20美分。该方法对免疫磁珠辅助生物传感器有前途。

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