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抗磁性排斥——微流控器件中无标记粒子处理的通用工具。

Diamagnetic repulsion--a versatile tool for label-free particle handling in microfluidic devices.

机构信息

The University of Hull, Department of Chemistry, Cottingham Road, Hull HU6 7RX, UK.

出版信息

J Chromatogr A. 2009 Dec 25;1216(52):9055-62. doi: 10.1016/j.chroma.2009.06.039. Epub 2009 Jun 18.

Abstract

We report the exploration of diamagnetic repulsion forces for the selective manipulation of microparticles inside microfluidic devices. Diamagnetic materials such as polymers are repelled from magnetic fields, an effect greatly enhanced by suspending a diamagnetic object in a paramagnetic Mn(2+) solution. The versatility of diamagnetic repulsion is demonstrated for the trapping, focussing and deflection of polystyrene particles for three example applications. Firstly, magnet pairs with unlike poles facing each other were arranged along a microcapillary to trap plugs of differently functionalised particles for a simultaneous surface-based assay in which biotin was selectively bound to a plug of streptavidin coated particles utilising only 22nL of reagent. Secondly, by slightly modifying the magnetic field design, the rapid focussing of particles into a narrow central stream at a flow rate of 650microms(-1) was accomplished for particle pre-concentration. In a third application, 5 and 10microm polystyrene particles were separated from each other in continuous flow by passing the particle mixture through a microfluidic chamber with a perpendicular magnetic field, a method termed diamagnetophoresis. The separation was investigated between flow rates of 20-100microL h(-1), with full resolution of the particle populations being achieved at 20microL h(-1). These experiments show the potential of diamagnetic repulsion for simple, label-free manipulation of particles and other diamagnetic objects such as cells for a range of bioanalytical techniques.

摘要

我们探索了抗磁性斥力在微流控器件中选择性操纵微颗粒的应用。抗磁性材料(如聚合物)会被磁场排斥,而将抗磁性物体悬浮在顺磁性 Mn(2+)溶液中会大大增强这种排斥效应。我们通过三个示例应用演示了抗磁性斥力的多功能性,包括对聚苯乙烯颗粒的捕获、聚焦和偏转。首先,将具有不同磁极的磁对沿着微毛细管排列,以捕获不同功能化的颗粒塞,从而实现同时进行的基于表面的分析,其中仅使用 22nL 的试剂即可选择性地将生物素结合到链霉亲和素涂层颗粒的颗粒塞中。其次,通过略微修改磁场设计,在 650μm/s 的流速下实现了颗粒的快速聚焦到狭窄的中心流,用于颗粒预浓缩。在第三个应用中,通过将颗粒混合物通过具有垂直磁场的微流控室,在连续流中分离 5 和 10μm 的聚苯乙烯颗粒,这种方法称为抗磁泳。在 20-100μL/h 的流速范围内研究了分离,在 20μL/h 的流速下实现了颗粒群体的完全分辨率。这些实验展示了抗磁性斥力在简单、无标记操纵颗粒和其他抗磁性物体(如细胞)方面的潜力,适用于一系列生物分析技术。

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