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Microchannel Electrophoretic Separations of DNA in Injection-Molded Plastic Substrates

机译:注射成型塑料基板中DNA的微通道电泳分离

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Microfabricated electrophoretic separation devices have been produced by an injection-molding process. The strategy for producing the devices involved solution-phase etching of a master template on a silicon wafer, followed by electroforming more durable injection-molding masters in nickel from the silicon master. One of the nickel electroforms was then used to prepare an injection mold insert, from which microchannel chips in an acrylic substrate were mass-produced. The microchannel devices were used to demonstrate high-resolution separations of double-stranded DNA fragments with total run times of less than 3 min. Run-to-run and chip-to-chip reproducibility was good, with relative standard deviation values below 1% for the run-to-run data and in the range of 2-3% for the chip-to-chip comparisons. Such devices could lead to the production of low-cost, single-use electrophoretic chips suitable for a variety of separation applications, including DNA sizing, DNA sequencing, random primary library screening, and rapid immunoassay testing.
机译:微型电泳分离装置已通过注塑工艺生产。生产器件的策略包括在硅片上固溶体阶段进行固溶相蚀刻,然后从硅母模中电铸出更耐用的镍注射成型母模。然后使用其中一种镍电铸模来制备注塑模具嵌件,从该嵌件中大量生产丙烯酸基材中的微通道芯片。该微通道设备用于演示双链DNA片段的高分辨率分离,总运行时间少于3分钟。批次间和芯片间的重现性良好,批次间数据的相对标准偏差值低于1%,芯片间比较的相对标准偏差值在2-3%的范围内。这样的设备可能会导致生产适合各种分离应用的低成本,一次性使用的电泳芯片,包括DNA大小测定,DNA测序,随机一级文库筛选和快速免疫分析测试。

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