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Fully Automated On-Chip Imaging Flow Cytometry System with Disposable Contamination-Free Plastic Re-Cultivation Chip

机译:全自动片上成像流式细胞仪系统,带有一次性无污染塑料再培养芯片

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We have developed a novel imaging cytometry system using a poly(methyl methacrylate (PMMA)) based microfluidic chip. The system was contamination-free, because sample suspensions contacted only with a flammable PMMA chip and no other component of the system. The transparency and low-fluorescence of PMMA was suitable for microscopic imaging of cells flowing through microchannels on the chip. Sample particles flowing through microchannels on the chip were discriminated by an image-recognition unit with a high-speed camera in real time at the rate of 200 event/s, e.g., microparticles 2.5 μm and 3.0 μm in diameter were differentiated with an error rate of less than 2%. Desired cells were separated automatically from other cells by electrophoretic or dielectrophoretic force one by one with a separation efficiency of 90%. Cells in suspension with fluorescent dye were separated using the same kind of microfluidic chip. Sample of 5 μL with 1 × 106 particle/mL was processed within 40 min. Separated cells could be cultured on the microfluidic chip without contamination. The whole operation of sample handling was automated using 3D micropipetting system. These results showed that the novel imaging flow cytometry system is practically applicable for biological research and clinical diagnostics.
机译:我们已经开发了一种基于聚甲基丙烯酸甲酯(PMMA)的微流控芯片的新型成像细胞仪系统。该系统无污染,因为样品悬浮液仅与易燃的PMMA芯片接触,而没有与系统的其他组件接触。 PMMA的透明性和低荧光性适用于流经芯片上微通道的细胞的显微成像。通过带有高速相机的图像识别单元,以200事件/秒的速度实时识别流经芯片上微通道的样品颗粒,例如,将直径为2.5μm和3.0μm的颗粒以错误率进行区分少于2%。通过电泳力或介电泳力将所需的细胞与其他细胞自动分离,分离效率为90%。使用相同类型的微流控芯片可以分离悬浮有荧光染料的细胞。在40分钟内处理5μL具有1×10 6 颗粒/ mL的样品。分离的细胞可以在微流控芯片上培养而不会受到污染。样品处理的整个操作使用3D微量移液系统实现自动化。这些结果表明,新颖的成像流式细胞仪系统实际上可用于生物学研究和临床诊断。

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