Laboratory for MEMS Applications, IMTEK - Department of Microsystems Engineering, University of Freiburg, Georges-Koehler-Allee 103, 79110 Freiburg, Germany.
Lab Chip. 2015 Mar 21;15(6):1545-53. doi: 10.1039/c4lc01269k.
Accurate timing of microfluidic operations is essential for the automation of complex laboratory workflows, in particular for the supply of sample and reagents. Here we present a new unit operation for timed valving and pumping in centrifugal microfluidics. It is based on temporary storage of pneumatic energy and time delayed sudden release of said energy. The timer is loaded at a relatively higher spinning frequency. The countdown is started by reducing to a relatively lower release frequency, at which the timer is released after a pre-defined delay time. We demonstrate timing for 1) the sequential release of 4 liquids at times of 2.7 s ± 0.2 s, 14.0 s ± 0.5 s, 43.4 s ± 1.0 s and 133.8 s ± 2.3 s, 2) timed valving of typical assay reagents (contact angles 36-78°, viscosities 0.9-5.6 mPa s) and 3) on demand valving of liquids from 4 inlet chambers in any user defined sequence controlled by the spinning protocol. The microfluidic timer is compatible to all wetting properties and viscosities of common assay reagents and does neither require assistive equipment, nor coatings. It can be monolithically integrated into a microfluidic test carrier and is compatible to scalable fabrication technologies such as thermoforming or injection molding.
准确的微流控操作时间对于复杂实验室工作流程的自动化至关重要,特别是对于样品和试剂的供应。在这里,我们提出了一种新的离心微流控定时阀和泵操作单元。它基于气动能量的临时存储和延迟的能量突然释放。定时器在相对较高的旋转频率下加载。通过降低到相对较低的释放频率来开始倒计时,此时定时器在预定义的延迟时间后释放。我们展示了以下定时功能:1)以 2.7 s ± 0.2 s、14.0 s ± 0.5 s、43.4 s ± 1.0 s 和 133.8 s ± 2.3 s 的时间顺序释放 4 种液体;2)对典型分析试剂(接触角 36-78°,粘度 0.9-5.6 mPa s)进行定时阀操作;3)按需从 4 个入口腔以用户定义的任何顺序控制的旋转协议进行液体的定时阀操作。微流体定时器与常见分析试剂的所有润湿性和粘度兼容,既不需要辅助设备,也不需要涂层。它可以单片集成到微流控测试载体中,并且与可扩展制造技术(如热成型或注塑成型)兼容。