Department of Chemistry, University of Virginia, Charlottesville, VA 22904, United States.
TeGrex Technologies, Charlottesville, VA 22904, United States.
Anal Chim Acta. 2017 Aug 8;980:41-49. doi: 10.1016/j.aca.2017.04.051. Epub 2017 May 15.
Forensic DNA analysis requires several steps, including DNA extraction, PCR amplification, and separation of PCR fragments. Intuitively, there are numerous situations where it would be beneficial to speed up the overall DNA analysis process; in this work, we focus on the most time-consuming component in the analysis pipeline, namely the polymerase chain reaction (PCR). Primers were specially designed to target 10 human genomic loci, all yielding amplicons shorter than 350 bases, for ease of downstream integration with on-board microchip electrophoresis. Primer concentrations were adjusted specifically for microdevice amplification, resulting in well-balanced short tandem repeat (STR) profiles. Furthermore, studies were performed to push the limits of the DNA polymerase to achieve rapid, multiplexed PCR on various substrates, including transparent and black polyethylene terephthalate (Pe), and with two distinct adhesives, toner and heat sensitive adhesive (HSA). Rapid STR-based multiplexed PCR amplification is demonstrated in 15 min on a Pe microdevice using a custom-built system for fluid flow control and thermocycling for the full 10-plex, and in 10 min for a smaller multiplex consisting of six core CODIS loci plus Amelogenin with amplicons shorter than 200bp. Lastly, preliminary studies indicate the capability of this PCR microdevice platform to be integrated with both upstream DNA extraction, and downstream microchip electrophoresis. This, coupled to the use of reagents that are compatible with lyophilization (lyo-compatible) for PCR, represents the potential for a fully integrated rotationally-driven microdevice for complete forensic DNA analysis.
法医 DNA 分析需要多个步骤,包括 DNA 提取、PCR 扩增和 PCR 片段分离。直观地说,有许多情况下,加快整个 DNA 分析过程将是有益的;在这项工作中,我们专注于分析管道中最耗时的组件,即聚合酶链反应 (PCR)。引物经过专门设计,可靶向 10 个人类基因组座,所有扩增子都短于 350 个碱基,便于与板载微芯片电泳下游集成。专门调整了引物浓度以适应微器件扩增,从而产生平衡良好的短串联重复 (STR) 图谱。此外,还进行了研究以推动 DNA 聚合酶的极限,以在各种基质上实现快速、多重 PCR,包括透明和黑色聚对苯二甲酸乙二醇酯 (Pe),以及两种不同的粘合剂,碳粉和热敏粘合剂 (HSA)。使用定制的流体流动控制和热循环系统,在 Pe 微器件上实现了 15 分钟的快速 STR 多重 PCR 扩增,可完全进行 10 重扩增,对于包含 6 个核心 CODIS 座和 Amelogenin 的较小多重扩增,扩增子短于 200bp,时间为 10 分钟。最后,初步研究表明,这种 PCR 微器件平台具有与上游 DNA 提取以及下游微芯片电泳集成的能力。这与用于 PCR 的与冻干(冻干兼容)兼容的试剂一起使用,代表了用于完整法医 DNA 分析的完全集成旋转驱动微器件的潜力。