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首页> 外文期刊>Analytical chemistry >Isolation of a Low Number of Sperm Cells from Female DNA in a Glass-PDMS-Glass Microchip via Bead-Assisted Acoustic Differential Extraction
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Isolation of a Low Number of Sperm Cells from Female DNA in a Glass-PDMS-Glass Microchip via Bead-Assisted Acoustic Differential Extraction

机译:通过珠辅助声学差分提取从玻璃PDMS-玻璃微芯片中的雌性DNA分离少量的精子细胞

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摘要

We report an improved separation method for the isolation of sperm cells from dilute, "large volume" samples containing female DNA using bead assisted acoustic trapping. In an enclosed glass-PDMS-glass (GPG) resonator, we exploit a three-layer microfluidic architecture to generate "trapping nodes" in ultrasonic standing waves. We investigate the dependence of trapping efficiency on particle concentration for both sperm cells and polymeric beads. After determination of the critical concentration of polymeric beads required to seed the trapping event, sperm cells in dilute solution are trapped as a result of the enhanced secondary radiation force (SRF). Sperm-cell-containing samples with volumes up to 300 mu L and cell concentrations as low as similar to 10 cells/mu L are amenable to effective trapping in the presence of an abundance of female DNA in solution. Complete processing of samples is accomplished with separation of the female and male fractions within 15 min. We demonstrate that the collected fractions are amenable to subsequent DNA extraction, short tandem repeat PCR, and the generation of STR profiles for the isolated sperm cells.
机译:我们报告了一种改进的分离方法,用于使用胎圈辅助声学捕获将精子细胞从稀释的“大体积”样品中分离,“大容量”样品。在封闭的玻璃PDMS-玻璃(GPG)谐振器中,我们利用三层微流体架构在超声波驻波中产生“捕获节点”。我们研究了诱捕效率对两种精子细胞和聚合物珠粒的颗粒浓度的依赖性。在测定种子所需的聚合物珠粒的临界浓度之后,稀释溶液中的精子细胞被捕获的次级辐射力(SRF)被捕获。含有高达300μL和细胞浓度的含有体积的含精子细胞的样品,与10个细胞/μl相似,可用于有效捕获溶液中的雌性DNA的丰度。通过在15分钟内分离雌性和雄性级分来完成样品的完全加工。我们证明收集的级分可用于随后的DNA提取,短串联重复PCR,以及用于隔离的精子细胞的STR谱的产生。

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