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首页> 外文期刊>Sensors and Actuators >A self-sufficient micro-droplet generation system using highly porous elastomeric sponges: A versatile tool for conducting cellular assays
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A self-sufficient micro-droplet generation system using highly porous elastomeric sponges: A versatile tool for conducting cellular assays

机译:使用高度多孔的弹性海绵的自给自足的微滴生成系统:进行细胞测定的多功能工具

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Here, we present a self-sufficient droplet generation system using a highly porous elastomeric sponge. Upon manual compression, aqueous solutions can be loaded into or unloaded from the sponge. The surface of the sponge accommodates hundreds of small orifices, which facilitate generation of microscale droplets when compressed inside an oil container. The physics underlying the generation and size distribution of droplets is explored. Proof-of-concept experiments demonstrate the capability of this method for encapsulation of human monocytes inside droplets. The droplets are chemically isolated, mechanically stable, and do not evaporate due to the presence of oil in the microwell. The cells settle at the lowest surface of the droplets without using any secondary immobilisation mechanisms. These features facilitate chemical stimulation and microscopic analysis of encapsulated cell clusters in a quick and parallel manner. The simplicity and self-sufficiency of this method makes it suitable for conducting various droplet-based cellular assays.
机译:在这里,我们提出了一种使用高度多孔的弹性海绵的自给自足的液滴生成系统。手动压缩后,可以将水溶液装入海绵中或从中卸下。海绵的表面可容纳数百个小孔,当在油容器中压缩时,这些小孔有助于生成微滴。探索了液滴产生和尺寸分布的物理基础。概念验证实验证明了该方法将人单核细胞封装在液滴内的能力。液滴是化学分离的,机械稳定的,并且不会由于微孔中油的存在而蒸发。细胞在不使用任何二级固定机制的情况下沉淀在液滴的最低表面。这些功能有助于快速,并行地对封装的细胞簇进行化学刺激和微观分析。该方法的简单性和自给性使其适用于进行各种基于液滴的细胞测定。

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