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Chemical cytometry on a picoliter-scale integrated microfluidic chip

机译:皮升级集成微流控芯片上的化学细胞计数

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摘要

An integrated microfluidic device has been fabricated for analyzing the chemical contents of a single cell (chemical cytometry). The device is designed to accomplish four different functions: (i) cell handling, (ii) metering and delivering of chemical reagents, (iii) cell lysis and chemical derivatization, and (iv) separating derivatized compounds and detecting them by laser-induced fluorescence. These functions are accomplished with only two valves, formed by multilayer soft lithography. A new kind of three-state valve and a picopipette are described; these elements are crucial for minimizing the reaction volume and ensuring optimal shape of the channel for electrophoresis injection. By using these valves, a reaction volume of ≈70 pl is achieved for the lysis and derivitization of the contents of a single Jurkat T cell (≈10 μm diameter). As a demonstration of the use of this integrated microfluidic device, electropherograms of amino acids from individual Jurkat T cells are recorded and compared with those collected from a multiple-cell homogenate.
机译:已经制造出集成的微流装置,用于分析单个细胞的化学含量(化学细胞计数法)。该设备旨在实现四种不同功能:(i)细胞处理,(ii)计量和输送化学试剂,(iii)细胞裂解和化学衍生化,以及(iv)分离衍生化的化合物并通过激光诱导的荧光进行检测。这些功能仅通过多层软光刻形成的两个阀即可完成。描述了一种新型的三态阀和皮皮表。这些元素对于最小化反应体积和确保电泳注入通道的最佳形状至关重要。通过使用这些阀,对于单个Jurkat T细胞(直径约10μm)的内容物的裂解和衍生化,可获得约70 pl的反应体积。为了证明使用此集成微流控设备,已记录了来自单个Jurkat T细胞的氨基酸电泳图,并将其与从多细胞匀浆中收集的氨基酸图进行了比较。

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