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Rapid hybridization of nucleic acids using isotachophoresis

机译:使用等速电泳快速杂交核酸

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摘要

We use isotachophoresis (ITP) to control and increase the rate of nucleic acid hybridization reactions in free solution. We present a new physical model, validation experiments, and demonstrations of this assay. We studied the coupled physicochemical processes of preconcentration, mixing, and chemical reaction kinetics under ITP. Our experimentally validated model enables a closed form solution for ITP-aided reaction kinetics, and reveals a new characteristic time scale which correctly predicts order 10,000-fold speed-up of chemical reaction rate for order 100 pM reactants, and greater enhancement at lower concentrations. At 500 pM concentration, we measured a reaction time which is 14,000-fold lower than that predicted for standard second-order hybridization. The model and method are generally applicable to acceleration of reactions involving nucleic acids, and may be applicable to a wide range of reactions involving ionic reactants.
机译:我们使用等速电泳(ITP)来控制和增加游离溶液中核酸杂交反应的速率。我们提出了一种新的物理模型,验证实验和该测定法的演示。我们研究了ITP下预浓缩,混合和化学反应动力学的耦合物理化学过程。我们经过实验验证的模型为ITP辅助的反应动力学提供了一种封闭形式的解决方案,并揭示了一个新的特征时标,可以正确预测100 pM级反应物化学反应速率的10,000倍加速,并在较低浓度下得到更大的增强。在500 pM的浓度下,我们测得的反应时间比标准二阶杂交预测的反应时间低14,000倍。该模型和方法通常适用于加速涉及核酸的反应,并且可以适用于多种涉及离子反应物的反应。

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  • 作者单位

    Mechanical Engineering, Stanford University, 440 Escondido Mall, Stanford, CA 94305 Department of Urology, Stanford University, 300 Pasteur Drive, Stanford, CA 94305 Faculty of Mechanical Engineering, Technion—Israel Institute of Technology, Israel;

    Mechanical Engineering, Stanford University, 440 Escondido Mall, Stanford, CA 94305;

    Department of Urology, Stanford University, 300 Pasteur Drive, Stanford, CA 94305;

    Mechanical Engineering, Stanford University, 440 Escondido Mall, Stanford, CA 94305;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hybridization kinetics; dna; rna; molecular beacons; electrophoresis;

    机译:杂交动力学脱氧核糖核酸;核糖核酸分子信标电泳;
  • 入库时间 2022-08-18 00:40:29

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