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Microinjection in a microfluidic format using flexible and compliant channels and electroosmotic dosage control

机译:使用灵活顺应的通道和电渗剂量控制以微流体形式进行显微注射

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摘要

We present a novel PDMS-based microinjection system in a microfluidic format with precise electroosmotic dosage control. The device architecture is fully scalable and enables high-throughput microinjections with integrated pre- and post-processing operations. The injection mechanism greatly simplifies current methods as only a single degree of freedom is required for injections. The injections are performed inside a fully enclosed channel by an integrated microneedle. Actuation of the needle is achieved by the compliant deformation of the channel structure by an external actuator. Reagent transport is achieved using electroosmotic flow (EOF) which provides non-pulsating flow and precise electrical dosage control. The potentials used for injections were between 5 V-25 V. The electrical properties and flow rates for the device were characterized for Zebrafish embryos and Rhodamine B and Methylene blue in pH 10 buffer solution. We also propose a method to enable precise individual dosing of embryos using direct electrical feedback. Additionally, we show that electrical feedback can be used to verify the location of the needle inside the injection target. A preliminary viability study of our device was conducted using Zebrafish (Danio rerio) embryos. The study involved the injection of ultrapure water into the embryos in an E3 buffer, and resulted in embryos that showed normal development at 48 hours.
机译:我们介绍了一种新型的基于PDMS的微流控系统,具有精确的电渗剂量控制功能。该设备架构是完全可扩展的,并通过集成的预处理和后处理操作实现了高通量显微注射。注射机制极大地简化了当前方法,因为注射仅需要一个自由度。注射是通过集成的微针在完全封闭的通道内进行的。通过外部致动器对通道结构的顺应形变来实现针的致动。使用电渗流(EOF)可以实现试剂运输,电渗流可提供非脉冲流和精确的电剂量控制。用于注射的电势在5 V-25 V之间。针对该设备的电学性质和流速,针对斑马鱼胚胎以及pH 10缓冲溶液中的若丹明B和亚甲基蓝进行了表征。我们还提出了一种方法,可以使用直接电反馈精确地对胚胎进行个体给药。此外,我们证明了电反馈可用于验证注射目标内针头的位置。我们的设备的初步可行性研究是使用斑马鱼(Danio rerio)胚胎进行的。该研究涉及在E3缓冲液中将超纯水注入胚胎,并在48小时后显示出正常发育的胚胎。

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