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首页> 外文期刊>Science Advances >Monodisperse drops templated by 3D-structured microparticles
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Monodisperse drops templated by 3D-structured microparticles

机译:通过3D结构微粒的单分散滴剂模板化

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The ability to create uniform subnanoliter compartments using microfluidic control has enabled new approaches for analysis of single cells and molecules. However, specialized instruments or expertise has been required, slowing the adoption of these cutting-edge applications. Here, we show that three dimensional–structured microparticles with sculpted surface chemistries template uniformly sized aqueous drops when simply mixed with two immiscible fluid phases. In contrast to traditional emulsions, particle-templated drops of a controlled volume occupy a minimum in the interfacial energy of the system, such that a stable monodisperse state results with simple and reproducible formation conditions. We describe techniques to manufacture microscale drop-carrier particles and show that emulsions created with these particles prevent molecular exchange, concentrating reactions within the drops, laying a foundation for sensitive compartmentalized molecular and cell-based assays with minimal instrumentation.
机译:使用微流体控制创建均匀亚纳尼壶子的能力已经为分析单细胞和分子进行了新方法。但是,需要专业的仪器或专业知识,减缓这些尖端应用的采用。在这里,我们表明,当简单地与两个不混溶的流体相混合时,具有雕刻表面化学品模板的三维结构微粒均匀尺寸的含水滴。与传统的乳液形成对比,受控体积的粒子模板滴落在系统的界面能量中占据最小值,使得具有简单和可再现的形成条件的稳定的单分散状态。我们描述了制造微米滴载体颗粒的技术,并显示用这些颗粒产生的乳液,防止分子交换,液体内的浓缩反应,为敏感的分区化分子和基于细胞的测定,具有最小仪器的基础。

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