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用于微流控光盘上稳健主动混合的新一代旋转系统:以油/水乳液作为评估测试

New generation of spinning systems for robust active mixing on microfluidic CDs: oil/water emulsion as an evaluation test.

作者信息

Al-Halhouli Ala'aldeen, Al-Shishani Ghaith, Albagdady Ahmed, Al-Faqheri Wisam

机构信息

NanoLab, School of Applied Technical Sciences, German Jordanian University Amman Jordan

MicroNano Mechatronic Lab, University of Windsor, Mechanical, Automotive & Materials Engineering Windsor ON Canada.

出版信息

RSC Adv. 2018 Jul 26;8(47):26619-26625. doi: 10.1039/c8ra04889d. eCollection 2018 Jul 24.

Abstract

Microfluidic CDs (or Lab-on-Disc) continue to emerge in various applications of real life sciences, including biomedical and pharmaceutical fields. However, microfluidic CDs with advanced and efficient unit operation tools, such as pumping, valving, and mixing, need to be implemented to achieve the required applications in these fields. In this work, a novel generation of a spinning system to perform robust active mixing is developed for microfluidic CDs. The developed system is equipped with a dual-motor and dual-CD configuration to perform magnetically driven active mixing. The results show that the developed spinning system can provide a wide range of mixing frequencies independent of the spinning speed of the microfluidic CD. To evaluate the performance of this system under extreme conditions, an emulsion process of oil and water was conducted. Although the oil produced high drag force on the mixing magnet, the emulsion process successfully reached a steady state of mixing within a few seconds (approximately 3.5 s), and the mixture became homogeneous at 75 seconds. To demonstrate one of the potential applications of the proposed developed spinning setup, microparticles were successfully extracted from water to oil using water/oil emulsion on the microfluidic CD. In conclusion, mixing can be performed without influencing the integrated microfluidic components such as valves or pumps. This improvement can widen the range of applicability of microfluidic CDs in multi-step and complex processes where mixing is essential.

摘要

微流控光盘(或芯片实验室)在现实生活科学的各种应用中不断涌现,包括生物医学和制药领域。然而,需要实现具有先进且高效的单元操作工具(如泵送、阀控和混合)的微流控光盘,以在这些领域实现所需的应用。在这项工作中,为微流控光盘开发了一种新一代的旋转系统,用于进行强大的主动混合。所开发的系统配备了双电机和双光盘配置,以进行磁驱动主动混合。结果表明,所开发的旋转系统可以提供广泛的混合频率,而与微流控光盘的旋转速度无关。为了评估该系统在极端条件下的性能,进行了油水乳液过程。尽管油对混合磁体产生了高阻力,但乳液过程在几秒钟内(约3.5秒)成功达到了稳定的混合状态,并且混合物在75秒时变得均匀。为了证明所开发的旋转装置的潜在应用之一,在微流控光盘上利用水/油乳液成功地将微粒从水萃取到油中。总之,可以在不影响诸如阀门或泵等集成微流控组件的情况下进行混合。这种改进可以拓宽微流控光盘在混合至关重要的多步骤和复杂过程中的适用范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3e4/9083022/27b872d909aa/c8ra04889d-f8.jpg

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