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SINGLE-MOLECULE. REAL-TIME. LABEL-FREE DYNAMIC BIOSENSING WITH NANOSCALE MAGNETIC FIELD SENSORS

机译:单分子。 即时的。 使用纳米级磁场传感器的无标签动态生物囊

摘要

Disclosed herein are devices, systems, and methods for monitoring single-molecule biological processes using magnetic sensors and magnetic particles (MNP). A MNP is attached to a biopolymer (e.g., a nucleic acid, protein, etc.), and motion of the MNP is detected and/or monitored using a magnetic sensor. Because the MNP is small (e.g., its size is comparable to the size of the molecule being monitored) and is tethered to a biopolymer, changes in the volume of Brownian motion of the MNP in a solution can be monitored to monitor the movement of the MNP and, by inference, the tethered biopolymer. The magnetic sensor is small (e.g., nanoscale or having a size on the order of the sizes of the MNP and the biopolymer) and can be used to detect even small changes in the position of the MNP within the sensing region of the magnetic sensor.
机译:本文公开了用于使用磁传感器和磁性颗粒(MNP)监测单分子生物过程的装置,系统和方法。 将MNP连接到生物聚合物(例如,核酸,蛋白质等)上,使用磁传感器检测和/或监测MNP的运动。 因为MNP小(例如,其尺寸与被监测分子的尺寸相当)并且被拴在生物聚合物上,因此可以监测MNP在溶液中的褐色运动体积的变化,以监测 MNP和推理,束缚生物聚合物。 磁传感器小(例如,纳米级或尺寸在MNP和生物聚合物的尺寸的顺序上),并且可用于检测MNP在磁传感器的感测区域内的位置的甚至小变化。

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