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An integrated sample-in-answer-out microfluidic chip for rapid human identification by STR analysis

机译:集成的进样出微流控芯片,可通过STR分析快速识别人类

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A fully integrated microfluidic chip for human identification by short tandem repeat (STR) analysis that includes a unique enzymatic liquid preparation of the DNA, microliter non-contact PCR, and a polymer that allows a high-resolution separation within a compact microchip footprint has been developed. A heat-activated enzyme that digests biological materials is employed to generate the target yield of DNA from a buccal swab or FTA paper. The microfluidic architecture meters an aliquot of the liberated DNA and mixes it with the PCR reagents prior to non-contact IR-mediated PCR amplification. The products of PCR amplification are mixed with a sizing standard (ladder) and the 18-plex STR amplicons are separated in an effective length (L_(eff)) of just 7 cm. The development, optimization and integration of each of these processes within the microfluidic chip are described. The device is able to generate genetic profiles in approximately 2 hours that match the profiles from the conventional processes performed using separate conventional instruments. Analysis is performed on a single plastic microchip with a size similar to that of a 96-well plate and only a few mm thick with no pretreatment of any of the functional domains. This is significant advancement in terms of ease of fabrication over glass microdevices or polymeric systems assembled from multiple components. Consequently, this fully integrated sample-in-answer-out microchip is an important step toward generation of a rapid micro-total analysis system for point-of-collection human identification based on genetic analysis.
机译:一种通过短串联重复序列(STR)分析用于人识别的完全集成的微流控芯片,该芯片包括独特的DNA酶促液体制备,微升非接触式PCR以及可在紧凑的微芯片占地面积内实现高分辨率分离的聚合物。发达。利用消化生物材料的热激活酶从颊拭子或FTA纸产生目标DNA产量。微流体体系结构对释放的DNA的等分试样进行定量,然后将其与PCR试剂混合,然后进行非接触式IR介导的PCR扩增。将PCR扩增的产物与上浆标准品(阶梯)混合,并且18重STR扩增子的有效长度(L_(eff))仅为7 cm。描述了微流控芯片中这些过程中每个过程的开发,优化和集成。该设备能够在大约2小时内生成遗传图谱,这些图谱与使用单独的常规仪器执行的常规过程的图谱相匹配。分析是在单个塑料微芯片上进行的,该芯片的大小类似于96孔板的大小,厚度只有几毫米,无需任何功能域的预处理。与玻璃微器件或由多个组件组装而成的聚合物系统相比,在制造方面的便利性方面,这是一项重大进步。因此,这种完全集成的进样出微芯片是朝着基于遗传分析的收集点人类识别快速生成微量总分析系统的重要一步。

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