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Magneto-Optical Biosensing Platform Based on Light Scattering from Self-Assembled Chains of Functionalized Rotating Magnetic Beads

机译:基于功能化旋转磁珠自组装链光散射的磁光生物传感平台

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摘要

We describe a simple protocol for the rapid, highly sensitive, and quantitative measurement of the concentration of biomolecules in a solution by monitoring light scattered by self-assembled chains of functionalized superparamagnetic beads (SBs) rotating in the solution. A rotating external field (H-ex) applied to an aqueous solution containing 250 nm diameter biotinylated SBs produced linear chains of SBs rotating in phase with Hex due to magnetically induced self-assembly. At constant Hex, the addition of avidin to the solution led to the formation of longer SB-chains than without the presence of avidin. The generation of longer SB-chains was revealed by increases in the amplitude of the oscillating optical transmittance signal of the magnetic colloid solution. Monitoring changes in the amplitude of the optical transmittance of the solution enabled quantitative determination of the concentration of avidin added to the solution with a sensitivity of 100 pM (6.7 ng/mL) and a dynamic range of at least 3 orders of magnitude. The rotating chains acted as biomolecule probes and micromagnetic mixers, enabling detection of biomolecular recognition in less than 30 s. This approach offers a rapid, highly sensitive, inexpensive, and homogeneous means for detecting biorecognition processes.
机译:我们描述了一个简单的协议,用于通过监视在溶液中旋转的功能化超顺磁珠(SBs)的自组装链散射的光来快速,高度灵敏和定量地测量溶液中生物分子的浓度。施加到含有250 nm直径生物素化SB的水溶液上的旋转外部磁场(H-ex)由于磁性感应自组装而产生了与Hex同相旋转的SB线性链。在恒定的十六进制下,与不存在抗生物素蛋白的情况相比,向溶液中添加抗生物素蛋白导致形成更长的SB链。磁性胶体溶液的振荡光学透射信号的振幅增加表明了更长的SB链的产生。监测溶液的光透射率幅度的变化使得能够定量确定添加到溶液中的抗生物素蛋白的浓度,灵敏度为100 pM(6.7 ng / mL),动态范围至少为3个数量级。旋转链充当生物分子探针和微磁混合器,可在不到30 s的时间内检测到生物分子。这种方法提供了一种快速,高度灵敏,便宜且均质的方法来检测生物识别过程。

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