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A hard microflow cytometer using groove-generated sheath flow for multiplexed bead and cell assays

机译:硬微流式细胞仪,使用槽产生的鞘流进行多重珠和细胞测定

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With a view toward developing a rugged microflow cytometer, a sheath flow system was micromachined in hard plastic (polymethylmethacrylate) for analysis of particles and cells using optical detection. Six optical fibers were incorporated into the interrogation region of the chip, in which hydrodynamic focusing narrowed the core stream to ~35 μm × 40 μm. The use of a relatively large channel at the inlet as well as in the interrogation region (375 μm × 125 μm) successfully minimized the risk of clogging. The device could withstand pressures greater than 100 psi without leaking. Assays using both coded microparticles and cells were demonstrated using the microflow cytometer. Multiplexed immunoassays detected nine different bacteria and toxins using a single mixture of coded microspheres. A549 cancer cells processed with locked nucleic acid probes were evaluated using fluorescence in situ hybridization.
机译:为了开发坚固的微流式细胞仪,在硬塑料(聚甲基丙烯酸甲酯)中对鞘流系统进行了微加工,以使用光学检测技术分析颗粒和细胞。芯片的询问区域中插入了六根光纤,其中流体动力聚焦将芯流缩小到〜35μm×40μm。在入口以及在询问区域(375μm×125μm)使用较大的通道可以最大程度地降低堵塞的风险。该设备可以承受大于100 psi的压力而不会泄漏。使用微流式细胞仪证实了使用编码的微粒和细胞的测定。多重免疫分析使用一种编码微球的混合物检测了九种不同的细菌和毒素。使用荧光原位杂交评估用锁定的核酸探针处理的A549癌细胞。

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