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Taking Advantage of Reduced Droplet-surface Interaction to Optimize Transport of Bioanalytes in Digital Microfluidics

机译:利用减少的液滴表面相互作用来优化数字微流控中生物分析物的运输

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摘要

Digital microfluidics (DMF), a technique for manipulation of droplets, is a promising alternative for the development of “lab-on-a-chip” platforms. Often, droplet motion relies on the wetting of a surface, directly associated with the application of an electric field; surface interactions, however, make motion dependent on droplet contents, limiting the breadth of applications of the technique.Some alternatives have been presented to minimize this dependence. However, they rely on the addition of extra chemical species to the droplet or its surroundings, which could potentially interact with droplet moieties. Addressing this challenge, our group recently developed Field-DW devices to allow the transport of cells and proteins in DMF, without extra additives.Here, the protocol for device fabrication and operation is provided, including the electronic interface for motion control. We also continue the studies with the devices, showing that multicellular, relatively large, model organisms can also be transported, arguably unaffected by the electric fields required for device operation.
机译:数字微流控(DMF)是一种处理液滴的技术,是开发“芯片实验室”平台的有前途的替代方法。通常,液滴运动依赖于表面的润湿,这直接与电场的施加有关。然而,表面相互作用使运动取决于液滴含量,限制了该技术的应用范围。已经提出了一些替代方案以最小化这种依赖性。然而,它们依赖于向液滴或其周围环境添加额外的化学物质,这可能与液滴部分相互作用。为了应对这一挑战,我们的团队最近开发了Field-DW设备,无需添加额外的添加剂即可在DMF中运输细胞和蛋白质,此处提供了设备制造和操作的协议,包括用于运动控制的电子接口。我们还继续使用该设备进行研究,结果表明,也可以运输多细胞,相对较大的模型生物,可以说不受设备操作所需电场的影响。

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