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Dual-Domain Microchip-Based Process for Volume Reduction Solid Phase Extraction of Nucleic Acids from Dilute, Large Volume Biological Samples

机译:基于双域Microchip的从稀薄,大体积生物样品中减少体积的固相萃取核酸的工艺

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A microfluidic device was developed to carry out integrated volume reduction and purification of nucleic acids from dilute, large volume biological samples commonly encountered in forensic genetic analysis. The dual-phase device seamlessly integrates two orthogonal solid-phase extraction (SPE) processes, a silica solid phase using chaotrope-driven binding and an ion exchange phase using totally aqueous chemistry (chitosan phase), providing the unique capability of removing polymerase chain reaction (PCR) inhibitors used in silica-based extractions (guanidine and isopropanol). Nucleic acids from a large volume sample are shown to undergo a substantial volume reduction on the silica phase, followed by a more stringent extraction on the chitosan phase. The key to interfacing the two steps is mixing of the eluted nucleic acids from the first phase with loading buffer which is facilitated by flow-mediated mixing over a herringbone mixing region in the device. The complete aqueous chemistry associated with the second purification step yields a highly concentrated PCR-ready eluate of nucleic acids devoid of PCR inhibitors that are reagent-based (isopropanol) and sample-based (indigo dye), both of which are shown to be successfully removed using the dual-phase device but not by the traditional microfluidic SPE ((mu)SPE). The utility of the device for purifying DNA was demonstrated with dilute whole blood, dilute semen, a semen stain, and a blood sample inhibited with indigo dye, with the resultant DNA from all shown to be PCR amplifiable. The same samples purified using (mu)SPE were not all PCR amplifiable due to a smaller concentration of the DNA and the lack of PCR-compatible aqueous chemistry in the extraction method. The utility of the device for the purification of RNA was also demonstrated, by the extraction of RNA from a dilute semen sample, with the resulting RNA amplified using reverse transcription (RT) PCR. The vrSPE-SPE device reliably yields a volume reduction for DNA and RNA purification on the order of 50- and 14-fold, respectively, both compatible with downstream PCR analysis. In addition, purification of all samples consumed less reagents (2.6-fold) than traditional purification methods, with the added advantage of being a "closed system" that eliminates sample transfer steps, thereby reducing the possible entrance points for contaminants.
机译:开发了一种微流体装置,以进行法医遗传分析中通常遇到的稀,大体积生物样品中核酸的整合体积减少和纯化。该双相设备无缝集成了两个正交固相萃取(SPE)工艺,使用离液剂驱动的键合形成的硅胶固相和使用完全含水化学方法(壳聚糖相)的离子交换相,提供了独特的去除聚合酶链反应的能力(PCR)抑制剂,用于基于二氧化硅的萃取(胍和异丙醇)。大量样品中的核酸在硅胶相上显示出明显的体积减少,然后在壳聚糖相上进行了更严格的萃取。连接这两个步骤的关键是将第一相洗脱的核酸与上样缓冲液混合,这是通过在设备中人字形混合区域上进行流介导的混合而实现的。与第二步纯化相关的完整水化学过程产生了高度浓缩的,可直接用于PCR的洗脱液,其中不含基于试剂(异丙醇)和基于样品(靛蓝染料)的PCR抑制剂,这两种试剂均被证明是成功的使用双相设备将其去除,而不是通过传统的微流体SPE(μSPE)去除。用稀释的全血,稀释的精液,精液染色和靛蓝染料抑制的血液样品证明了该纯化DNA的装置的实用性,所有所得的DNA均显示可PCR扩增。使用μSPE纯化的相同样品不能全部用PCR扩增,这是因为DNA的浓度较小,并且提取方法中缺少与PCR相容的水性化学试剂。通过从稀精液样品中提取RNA,并使用逆转录(RT)PCR扩增得到的RNA,也证明了该设备用于纯化RNA的实用性。 vrSPE-SPE设备可可靠地减少DNA和RNA纯化的体积,分别降低50倍和14倍,均与下游PCR分析兼容。另外,与传统的纯化方法相比,所有样品的纯化消耗的试剂更少(2.6倍),并且具有“封闭系统”的优势,消除了样品转移步骤,从而减少了污染物的可能进入点。

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