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Magnetically Barcoded Microcarriers Detection with TMR Sensors

机译:使用TMR传感器的磁性条形码微载体检测

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We are working towards a novel lab-on-a-chip technology based on suspended magnetically encoded microcarriers [1], [2]. Our newest generation of microcarriers consist of up to fourteen individual magnetic elements encapsulated within a SU8 polymer and gold layer (Fig. 1.b), which both provide routes to bio-functionalization through surface epoxide groups and thiol chemistry [3]. The writing/reading of the digital magnetic codes is obtained through coercivity engineered magnetic elements (Fig. 1.a), while the detection is performed by means of a tunneling magneto-resistance (TMR) sensor. The global address-ability of these bits is achieved by utilizing magnetic shape anisotropy. The possibility of attaching different fluorescent labels to each side of the microcarriers enables a positive control in binding assays. Potential applications for this platform range from DNA/protein analysis for genotyping and point-of-care diagnostics to drug development and combinatorial chemistry.
机译:我们正在努力开发一种基于悬浮磁编码微载体的新型芯片实验室技术[1],[2]。我们最新一代的微载体由多达14个封装在SU8聚合物和金层中的单个磁性元素组成(图1.b),两者均提供了通过表面环氧基和硫醇化学实现生物功能化的途径[3]。数字磁码的写入/读取是通过矫顽力工程磁性元件(图1.a)获得的,而检测是通过隧道磁阻(TMR)传感器执行的。这些位的全局寻址能力是通过利用磁性形状各向异性来实现的。将不同的荧光标记物附着到微载体的每一侧的可能性实现了结合测定中的阳性对照。该平台的潜在应用范围从DNA /蛋白质分析(用于基因分型和即时诊断)到药物开发和组合化学。

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