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从稀释的大量生物样本中进行DNA的体积减少固相萃取。

Volume reduction solid phase extraction of DNA from dilute, large-volume biological samples.

作者信息

Reedy Carmen R, Bienvenue Joan M, Coletta Lisa, Strachan Briony C, Bhatri Naila, Greenspoon Susan, Landers James P

机构信息

Department of Chemistry, University of Virginia, Charlottesville, VA 22904, USA.

出版信息

Forensic Sci Int Genet. 2010 Apr;4(3):206-12. doi: 10.1016/j.fsigen.2009.09.005. Epub 2009 Oct 12.

Abstract

Microdevices are often designed to process sample volumes on the order of tens of microliters and cannot typically accommodate larger volume samples without adversely affecting efficiency and greatly increasing analysis time. However, dilute, large-volume biological samples are frequently encountered, especially in forensic or clinical laboratories. A microdevice, capable of efficiently processing 0.5-1 mL samples has been developed for solid phase extraction (SPE) of DNA. SPE was carried out on a microdevice utilizing magnetic silica particles and an optimized volumetric flow rate and elution buffer, resulting in a 50-fold decrease in volume and a 15-fold increase in DNA concentration. Device characterization studies showed DNA extraction efficiencies comparable with previously reported silica-based purification methods, with robust performance demonstrated by the successful amplification of a fragment from the gelsolin gene extracted from dilute whole blood. In addition, the microchip-based method for SPE of large volume, dilute samples was also used to demonstrate the first successful on-chip purification of mitochondrial DNA (mtDNA) from both dilute whole blood and a degraded blood stain.

摘要

微型设备通常设计用于处理几十微升量级的样本体积,一般无法容纳更大体积的样本,否则会对效率产生不利影响并大幅增加分析时间。然而,稀释的大体积生物样本经常出现,尤其是在法医或临床实验室。一种能够有效处理0.5 - 1毫升样本的微型设备已被开发用于DNA的固相萃取(SPE)。在微型设备上利用磁性二氧化硅颗粒、优化的体积流速和洗脱缓冲液进行固相萃取,结果体积减少了50倍,DNA浓度增加了15倍。设备表征研究表明,DNA提取效率与先前报道的基于二氧化硅的纯化方法相当,从稀释全血中提取的凝溶胶蛋白基因片段成功扩增证明了其强大的性能。此外,基于微芯片的大体积、稀释样本固相萃取方法还首次成功地从稀释全血和降解血迹中进行了线粒体DNA(mtDNA)的芯片上纯化。

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