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Hydrodynamic micro-encapsulation of aqueous fluids and cells via 'on the fly' photopolymerization

机译:通过“动态”光聚合对水性流体和细胞进行流体动力学微囊化

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We report a new technique that, in contrast to conventional methods, uses a microfluidic platform for the fabrication of polymeric microcapsules that can contain sensitive biological materials. This encapsulation process is carried out through the use of hydrodynamic phenomena (e.g., multiphase laminar flow), and 'on the fly' photopolymerization. Our method allows for the generation of microcapsules whose size can be controlled by a regulation of flow rates, and the polymerized capsule can protect fragile materials, such as cells, DNA and enzymes from harsh environments. The proposed approach is extended to the fabrication of a microcontainer that can handle small volumes of liquid. The flexibility of the method across different materials and scales is a key advantage over many existing methods.
机译:我们报告了一种新技术,与传统方法相反,它使用微流体平台制造可以包含敏感生物材料的聚合物微囊。通过使用流体动力学现象(例如,多相层流)和“动态”光聚合来进行这种封装过程。我们的方法允许生成微胶囊,其大小可以通过调节流速来控制,并且聚合的胶囊可以保护脆弱的材料(例如细胞,DNA和酶)免受恶劣环境的影响。所提出的方法扩展到微容器的制造,该微容器可以处理少量液体。与许多现有方法相比,该方法在不同材料和规模上的灵活性是一个关键优势。

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