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Label-Free and High-Throughput Detection of Biomolecular Interactions Using a Flatbed Scanner Biosensor

机译:使用平板扫描仪生物传感器无标记和高通量检测生物分子相互作用

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Fluorescence based microarray detection systems provide sensitive measurements; however, variation of probe immobilization and poor repeatability negatively affect the final readout, and thus quantification capability of these systems. Here, we demonstrate a label-free and high-throughput optical biosensor that can be utilized for calibration of fluorescence microarrays. The sensor employs a commercial flatbed scanner, and we demonstrate transformation of this low cost (similar to 100 USD) system into an Interferometric Reflectance Imaging Sensor through hardware and software modifications. Using this sensor, we report detection of DNA hybridization and DNA directed antibody immobilization on label-free microarrays with a noise floor of similar to 30 pg/mm(2), and a scan speed of 5 s (50 s for 10 frames averaged) for a 2 mm X 2 mm area. This novel system may be used as a standalone label-free sensor especially in low-resource settings, as well as for quality control and calibration of microarrays in existing fluorescence-based DNA and protein detection platforms.
机译:基于荧光的微阵列检测系统提供敏感的测量;然而,探针固定化的变化和可重复性差的影响对最终读数产生负面影响,从而对这些系统的定量能力产生负面影响。在这里,我们展示了无标记和高通量的光学生物传感器,可用于校准荧光微阵列。该传感器采用商业平板扫描仪,我们通过硬件和软件修改展示了这种低成本(类似于100美元)系统的变换为干涉反射成像传感器。使用该传感器,我们报告DNA杂交和DNA定向抗体固定的检测与无标签的微阵列,其具有类似于30pg / mm(2)的噪声地板,以及5 s的扫描速度(50秒平均为10帧)对于2 mm x 2 mm区域。该新颖系统可以用作独立的无标签传感器,尤其是在低资源设置中,以及基于荧光的DNA和蛋白质检测平台的微阵列的质量控制和校准。

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