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Hierarchical Hydrodynamic Flow Confinement: EfficientUse and Retrieval of Chemicals for Microscale Chemistry on Surfaces

机译:分层流体动力流量限制:高效用于表面微观化学的化学物质的使用和检索

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摘要

We devised, implemented, and tested a new concept for efficient local surface chemistry that we call hierarchical hydrodynamic flow confinement (hierarchical HFC). This concept leverages the hydrodynamic shaping of multiple layers of liquid to address challenges inherent to microscale surface chemistry, such as minimal dilution, economical consumption of reagent, and fast liquid switching. We illustrate two modes of hierarchical HFC, nested and pinched, by locally denaturing and recovering a 26 bp DNA with as little as 2% dilution and by efficiently patterning an antibody on a surface, with a 5 μm resolution and a 100-fold decrease of reagent consumption compared to microcontact printing. In addition, valveless switching between nanoliter volumes of liquids was achieved within 20 ms. We believe hierarchical HFC will have broad utility for chemistry on surfaces at the microscale.
机译:我们设计,实施和测试了一种有效的局部表面化学新概念,我们将其称为分层流体动力流动限制(分层HFC)。这个概念利用了多层液体的流体动力学成形来解决微观表面化学固有的挑战,例如最小的稀释,经济的试剂消耗和快速的液体转换。我们举例说明了嵌套HFC的两种模式,即嵌套的和捏合的,通过局部变性和回收率低至2%的26 bp DNA以及通过在表面上有效构图抗体的方式(分辨率为5μm,降低了100倍)来实现的。与微接触印刷相比,试剂消耗量更大。此外,在20毫秒内实现了纳升级液体之间的无阀切换。我们相信,分层HFC将在微观表面化学上具有广泛的用途。

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