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旋转针驱动的模块化外乳液生成器。

Modular off-chip emulsion generator enabled by a revolving needle.

机构信息

Department of Electronic, Electrical and Systems Engineering, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.

School of Mechanical, Materials, Mechatronic and Biomedical Engineering, University of Wollongong, Wollongong, NSW 2522, Australia.

出版信息

Lab Chip. 2020 Dec 15;20(24):4592-4599. doi: 10.1039/d0lc00939c.

Abstract

Microfluidic chips have demonstrated unparalleled abilities in droplet generation, including precise control over droplet size and monodispersity. And yet, their rather complicated microfabrication process and operation can be a barrier for inexperienced researchers, which hinders microdroplets from unleashing their potential in broader fields of research. Here, we attempt to remove this barrier by developing an integrated and modular revolving needle emulsion generator (RNEG) to achieve high-throughput production of uniformly sized droplets in an off-chip manner. The RNEG works by driving a revolving needle to pinch the dispersed phase in a minicentrifuge tube. The system is constructed using modular components without involving any microfabrication, thereby enabling user-friendly operation. The RNEG is capable of producing microdroplets of various liquids with diameters ranging from tens to hundreds of micrometres. We further examine the principle of operation using numerical simulations and establish a simple model to predict the droplet size. Moreover, by integrating curing and centrifugation processes, the RNEG can produce hydrogel microparticles and transfer them from an oil phase into a water phase. Using this ability, we demonstrate the encapsulation and culture of single yeast cells within hydrogel microparticles. We envisage that the RNEG can become a versatile and powerful tool for high-throughput production of emulsions to facilitate diverse biological and chemical research.

摘要

微流控芯片在液滴生成方面表现出了无与伦比的能力,包括对液滴大小和单分散性的精确控制。然而,其相当复杂的微加工工艺和操作可能会对经验不足的研究人员造成障碍,这阻碍了微液滴在更广泛的研究领域中发挥潜力。在这里,我们尝试通过开发集成的和模块化的旋转针乳液发生器(RNEG)来消除这一障碍,以实现非芯片方式的高通量、均匀尺寸液滴的生产。RNEG 通过驱动旋转针在微型离心机管中挤压分散相来工作。该系统使用模块化组件构建,不涉及任何微加工,从而实现了用户友好的操作。RNEG 能够以数十到数百微米的直径生产各种液体的微液滴。我们进一步使用数值模拟研究了操作原理,并建立了一个简单的模型来预测液滴尺寸。此外,通过整合固化和离心过程,RNEG 可以生产水凝胶微珠,并将其从油相转移到水相。利用这一能力,我们展示了在水凝胶微珠内包封和培养单个酵母细胞。我们设想,RNEG 可以成为一种通用且强大的工具,用于高通量生产乳液,从而促进各种生物和化学研究。

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