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Micromagnet arrays for on-chip focusing, switching, and separation of superparamagnetic beads and single cells

机译:微磁体阵列,用于超顺磁性微珠和单细胞的片上聚焦,切换和分离

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摘要

Nonlinear magnetophoresis (NLM) is a novel approach for on-chip transport and separation of superparamagnetic (SPM) beads, based on a travelling magnetic field wave generated by the combination of a micromagnet array (MMA) and an applied rotating magnetic field. Here, we present two novel MMA designs that allow SPM beads to be focused, sorted, and separated on-chip. Converging MMAs were used to rapidly collect the SPM beads from a large region of the chip and focus them into synchronised lines. We characterise the collection efficiency of the devices and demonstrate that they can facilitate on-chip analysis of populations of SPM beads using a single-point optical detector. The diverging MMAs were used to control the transport of the beads and to separate them based on their size. The separation efficiency of these devices was determined by the orientation of the magnetisation of the micromagnets relative to the external magnetic field and the size of the beads and relative to that of micromagnets. By controlling these parameters and the rotation of the external magnetic field we demonstrated the controlled transport of SPM bead-labelled single MDA-MB-231 cells. The use of these novel MMAs promises to allow magnetically-labelled cells to be efficiently isolated and then manipulated on-chip for analysis with high-resolution chemical and physical techniques.
机译:非线性磁浮法(NLM)是一种基于微磁体阵列(MMA)和外加旋转磁场的结合产生的行进磁场波,用于超顺磁(SPM)磁珠在芯片上传输和分离的新方法。在这里,我们介绍了两种新颖的MMA设计,这些设计允许SPM珠在芯片上聚焦,分类和分离。会聚的MMA用于从芯片的较大区域快速收集SPM磁珠,并将它们聚焦到同步线中。我们表征了设备的收集效率,并证明它们可以使用单点光学检测器促进SPM珠子种群的芯片分析。分散的MMA用于控制微珠的运输,并根据其大小将其分离。这些装置的分离效率由微磁体的磁化强度相对于外部磁场的方向,磁珠的大小以及相对于微磁体的磁化强度来确定。通过控制这些参数和外部磁场的旋转,我们证明了SPM珠标记的单个MDA-MB-231细胞的受控转运。这些新型MMA的使用有望使磁性标记的细胞得到有效分离,然后在芯片上进行处理,以使用高分辨率化学和物理技术进行分析。

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