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Magnetophoretic Decoupler for Disaggregation and Interparticle Distance Control

机译:用于分解和颗粒间距控制的磁体去耦

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摘要

The manipulation of superparamagnetic beads has attracted various lab on a chip and magnetic tweezer platforms for separating, sorting, and labeling cells and bioentities, but the irreversible aggregation of beads owing to magnetic interactions has limited its actual functionality. Here, an efficient solution is developed for the disaggregation of magnetic beads and interparticle distance control with a magnetophoretic decoupler using an external rotating magnetic field. A unique magnetic potential energy distribution in the form of an asymmetric magnetic thin film around the gap is created and tuned in a controlled manner, regulated by the size ratio of the bead with a magnetic pattern. Hence, the aggregated beads are detached into single beads and transported in one direction in an array pattern. Furthermore, the simultaneous and accurate spacing control of multiple magnetic bead pairs is performed by adjusting the angle of the rotating magnetic field, which continuously changes the energy well associated with a specific shape of the magnetic patterns. This technique offers an advanced solution for the disaggregation and controlled manipulation of beads, can allow new possibilities for the enhanced functioning of lab on a chip and magnetic tweezers platforms for biological assays, intercellular interactions, and magnetic biochip systems.
机译:超顺磁珠的操纵已经吸引了芯片和磁性镊子平台上的各种实验室,用于分离,分选和标记细胞和生物,但由于磁相互作用的珠子的不可逆聚集限制了其实际功能。这里,开发了一种有效的解决方案,用于使用外部旋转磁场与磁体解耦器的磁珠和颗粒间距离控制的分解的解聚。围绕间隙的非对称磁性薄膜的形式的独特的磁电位能量分布以受控的方式产生和调谐,由磁性图案的珠子的尺寸比调节。因此,聚集的珠子分离成单珠,并在阵列图案中在一个方向上运输。此外,通过调节旋转磁场的角度来执行多个磁珠对的同时和精确的间隔控制,该旋转磁场连续地改变与磁图案的特定形状相关的能量孔。该技术为珠子的分类和控制操纵提供了先进的解决方案,可以允许新的可能性在芯片和磁性镊子平台上增强实验室的功能,用于生物测定,细胞间相互作用和磁性生物芯片系统。

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