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Method and system for inhibiting cross-contamination in fluids of combinatorial chemistry device

机译:抑制组合化学装置的流体中的交叉污染的方法和系统

摘要

A system and method for accomplishing a plurality of combinatorial processes in parallel comprising a microelectronic and fluidic array (device array) having micron-sized reservoirs, connecting microchannels and reaction cells etched into a substrate. The device array is supported by a station which serves to interface and perform electro- optic measurements of material in the reaction cells of the device array. The device array incorporates a modular configuration with three distinct layers or plates. The device array comprises a top feedthru plate, a center distribution plate and a bottom cell plate. The three plates are stacked vertically and coupled together to form a liquid- tight seal. Reservoirs, microchannels and reactions cells are controllably etched onto the plates using traditional semiconductor fabrication techniques. The top feedthru plate serves as a cover for the device array and contains apertures selectively positioned above the reservoirs located in the center distribution plate. The center distribution plate comprises a plurality of micron sized reservoirs, microchannels, reservoir feeds, cell feeds and overflow feeds for the distribution of reagent fluids to the reaction cells located in the bottom cell plate. The detachable bottom cell plate serves as a microlaboratory tray of reaction cells. Once the proper reagents or other materials are introduced into the reaction cells, the bottom cell plate is decoupled from the device array and removed for incubation or analysis.
机译:一种用于并行完成多个组合过程的系统和方法,包括具有微米级储槽,连接微通道和蚀刻到基板中的反应池的微电子和流体阵列(设备阵列)。装置阵列由站支撑,该站用于对装置阵列的反应池中的材料进行接口连接和执行光电测量。该设备阵列包含具有三个不同层或板的模块化配置。装置阵列包括顶部穿通板,中央分配板和底部电池板。将这三个板垂直堆叠并连接在一起以形成不透液的密封。使用传统的半导体制造技术,可控地将储层,微通道和反应池蚀刻到板上。顶部馈通板用作设备阵列的盖子,并包含有选择地位于中央分配板中容器上方的孔。中心分配板包括多个微米级的储槽,微通道,储槽进料,池进料和溢流进料,用于将试剂流体分配至位于底部池板中的反应池。可拆卸的底部细胞板用作反应室的微实验室托盘。一旦将适当的试剂或其他材料引入反应池,底部池板便会与设备阵列分离,并移出以进行孵育或分析。

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