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An inexpensive, versatile, compact, programmable temperature controller and thermocycler for simultaneous analysis and visualization within a microscope

机译:廉价,多功能,紧凑,可编程的温度控制器和热循环仪,用于在显微镜内同时分析和可视化

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摘要

Microfluidic Lab on a Chip (LOC) devices are key enabling technologies for research and industry due to their compact size, which increases the number of integrated operations while decreasing reagent use. Common operations within these devices such as chemical and biological reactions, cell growth, or kinetic measurements often require temperature control. Commercial temperature controllers are constrained by cost, complexity, size, and especially versatility for use in a broad range of applications. Small companies and research groups need temperature control systems that are more accessible, which have a wide applicability. This work describes the fabrication and validation of an inexpensive, modular, compact, and user-friendly temperature control system that functions within a microscope. This system provides precise temperature acquisition and control during imaging of any arbitrary sample which complies with the size of a microscope slide. The system includes two parts. The first part is a compact and washable Device Holder that is fabricated from high-temperature resistant material and can fit securely inside a microscope stage. The second part is a robust Control Device that incorporates all the necessary components to program the temperature settings on the device and to output temperature data. The system can achieve heating and cooling times between 50 degrees C and 100 degrees C of 32 s and 101 s, respectively. A Bluetooth enabled smartphone application has been developed for real-time data visualization. The utility of the temperature control system was shown by monitoring rhodamine B fluorescence in a microfluidic device over a range of temperatures, and by performing a polymerase chain reaction (PCR) within a microscope. This temperature control system could potentially impact a broad scope of applications that require simultaneous imaging and temperature control.
机译:芯片(LOC)设备上的Microfluidic实验室是由于其紧凑尺寸而导致研究和工业的关键技术,这增加了综合操作的数量,同时降低了试剂使用。这些装置中的常见操作,例如化学和生物反应,细胞生长或动力学测量通常需要温度控制。商业温度控制器受到成本,复杂性,尺寸,特别是在广泛应用中使用的特殊功能性的限制。小公司和研究组需要温度控制系统,这些系统更可访问,具有广泛的适用性。这项工作描述了在显微镜内起作用的廉价,模块化,紧凑和用户友好的温度控制系统的制造和验证。该系统在任何任意样品的成像期间提供精确的温度采集和控制,该样品符合显微镜载玻片的尺寸。该系统包括两部分。第一部分是紧凑型和可洗的装置支架,其由高温材料制成,并且可以在显微镜阶段内牢固地配合。第二部分是一个强大的控制设备,包含所有必要的组件,以便在设备上编程温度设置并输出温度数据。该系统可以分别在32秒和101秒的50℃和100摄氏度之间实现加热和冷却时间。已开发了一个蓝牙智能手机应用程序,用于实时数据可视化。通过在一定温度范围内监测微流体装置中的罗丹明B荧光,并通过在显微镜内进行聚合酶链反应(PCR)来显示温度控制系统的效用。该温度控制系统可能会影响需要同时成像和温度控制的广泛应用范围。

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  • 来源
    《Microfluidics and nanofluidics》 |2021年第5期|40.1-40.10|共10页
  • 作者单位

    Montana State Univ Chem & Biol Engn Dept POB 173920 Bozeman MT 59717 USA;

    Montana State Univ Chem & Biol Engn Dept POB 173920 Bozeman MT 59717 USA;

    Montana State Univ Chem & Biol Engn Dept POB 173920 Bozeman MT 59717 USA|Montana State Univ Ctr Biofilm Engn POB 173980 Bozeman MT 59717 USA;

    Montana State Univ Chem & Biol Engn Dept POB 173920 Bozeman MT 59717 USA|Montana State Univ Ctr Biofilm Engn POB 173980 Bozeman MT 59717 USA;

    Montana State Univ Chem & Biol Engn Dept POB 173920 Bozeman MT 59717 USA;

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