Biochemical sensing assays based on coalescence-induced self-propulsion digital microfluidics

V. Nock, Yannic Müller, M. Sellier, C. Verdier
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引用次数: 5

Abstract

This work reports on coalescence-induced self-propulsion as a driving mechanism to actuate microfluidic droplet assays. We demonstrate multi-droplet translation and assay-type sensing on a digital microfluidics platform by use of surface tension gradients alone. These gradients arise during the coalescence of two droplets of liquid having different compositions and therefore surface tensions. We demonstrate a chemi-luminescence blood-detection reaction based on the mixing of two carrier droplets containing solutions of synthetic blood and luminol sensor solution. Presence of iron in the blood solution is recorded using digital imaging and analyzed via offline image processing. The results demonstrate the capability of the propulsion mechanism to propel droplets over several millimeters, thus enabling one to design a new family of chip-based biochemical sensor assays.
基于聚结诱导自推进数字微流体的生化传感分析
本工作报告了聚结诱导的自推进作为驱动机制来驱动微流控液滴分析。我们演示了多液滴平移和分析型传感在数字微流体平台上仅使用表面张力梯度。这些梯度是在两个不同成分的液滴结合时产生的,因此产生了表面张力。我们演示了一种化学发光血液检测反应,该反应基于混合含有合成血液溶液和鲁米诺传感器溶液的两个载体液滴。使用数字成像记录血液溶液中铁的存在,并通过离线图像处理进行分析。结果表明,推进机制的能力,推动液滴超过几毫米,从而使人们能够设计一个新的家族基于芯片的生化传感器分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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