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MICROFLUIDIC ARRAY CHIP FOR SINGLE-CELL ISOLATION USING TWO-WAY PNEUMATIC ACTUATION

机译:使用双向气动致动的单细胞隔离的微流体阵列芯片

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In this work, we have implemented a new microfluidic chip which can capture and isolate single-cells in a microchamber array for various single-cell assays. Proposed microfluidic chip consists of two PDMS (Polydimethylsiloxane) layers: a microfluidic channel layer for injecting cells and reagents and an air channel for pneumatic actuation. Each microfluidic chip has 27 microchambers for single-cell culture and analysis. In order to verify our single-cell capturing scheme, we tested the fabricated chip with 15μm-diameter polystyrene microbeads. We successfully trapped the microbeads in each the capture site with a capture rate higher than 80% and loaded them into the corresponding chambers. After loading, the chambers were isolated from one another by pneumatic actuation. The isolation was confirmed by flowing blue ink into the main flow channel.
机译:在这项工作中,我们已经实施了一种新的微流体芯片,其可以捕获和分离微电池阵列中的单细胞以进行各种单细胞测定。提出的微流体芯片由两个PDMS(聚二甲基硅氧烷)层组成:用于注入细胞和试剂的微流体通道层和用于气动致动的空气通道。每种微流体芯片具有27个微细胞培养和分析的微量学器。为了验证我们的单细胞捕获方案,我们用15μm直径的聚苯乙烯微珠测试了制造的芯片。我们在每个捕获站点中捕获了微生物的捕获速率高于80%并将其装入相应的腔室。装载后,通过气动致动,腔室彼此分离。通过将蓝色墨水流入主流量通道来确认隔离。

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