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Design and characterization of convective thermal cyclers for high-speed DNA analysis.

机译:对流热循环仪的设计和表征,用于高速DNA分析。

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摘要

An ideal polymerase chain reaction (PCR) system should be capable of rapidly amplifying a wide range of targets in both single and multiplex formats. Unfortunately, the timescales and complexities involved in many existing technologies impose significant limitations on achievable throughput. Buoyancy driven PCR is emerging as a simplified version of thermally driven bio-analysis systems. Here, we demonstrate a simplified convectively driven thermocycler capable of performing single and multiplex PCR for amplicons ranging from 191 bp to 1.3 kb within 10 to 50 minutes using 10 to 25 μL reaction volumes. By positioning two independent thermoelectric heating elements along the perimeter of a flow loop reactor constructed using ordinary plastic tubing, a buoyancy-driven flow is established that continuously circulates reagents through temperature zones associated with the PCR process. Unlike conventional benchtop thermocyclers, this arrangement allows reactions to be performed without the need for dynamic temperature control of inactive hardware components while maintaining comparable product yields and requiring no modifications to standard PCR protocols. We also provide a general correlation that can be applied to design reactor geometries satisfying virtually any combination of reagent volume and cycling time. In addition to offering an attractive combination of cost and performance, this system is readily adaptable for portable battery powered operation, making it feasible to perform PCR-based assays in a broader array of settings.
机译:理想的聚合酶链反应(PCR)系统应能够快速扩增单一和多重形式的多种靶标。不幸的是,许多现有技术所涉及的时间尺度和复杂性对可实现的吞吐量施加了重大限制。浮力驱动PCR作为热驱动生物分析系统的简化版本正在兴起。在这里,我们展示了一种简化的对流驱动的热循环仪,能够在10至50分钟内使用10至25μL反应体积对191 bp至1.3 kb的扩增子进行单次和多重PCR。通过将两个独立的热电加热元件沿使用普通塑料管构造的流动回路反应器的周边放置,可建立浮力驱动的流动,该流动使试剂连续循环通过与PCR过程相关的温度区域。与常规台式热循环仪不同,这种布置无需进行非活性硬件组件的动态温度控制即可进行反应,同时保持相当的产品收率,并且无需修改标准PCR方案。我们还提供了可用于设计反应器几何形状的一般相关性,实际上可以满足试剂体积和循环时间的任意组合。除了提供成本与性能的吸引人的结合之外,该系统还易于适应便携式电池供电的操作,使其在更广泛的设置中进行基于PCR的测定成为可能。

著录项

  • 作者

    Agrawal, Nitin.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Chemistry Biochemistry.;Biophysics General.;Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 154 p.
  • 总页数 154
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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