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Low Voltage DNA Sequencing Platform Utilizing Picofluidic Electrowetting Devices.

机译:利用微流体电润湿设备的低压DNA测序平台。

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摘要

Digital microfluidics as implemented in electrowetting-on-dielectric (EWD) technology has been widely used as a platform for miniaturizing the biomedical or biochemical laboratory on a chip in recent years. DNA pyrosequencing, one of the DNA sequencing-by-synthesis methods, has been successfully integrated on EWD devices. However, this platform requires microliters of reagents and 200∼300V of applied voltages, which contributes to higher costs and limits the feasibility of a portable system. This dissertation proposes a low voltage EWD device using multi-layer insulators that can manipulate picoliter droplets on chip. A 300pl droplet was dispensed and actuated at voltages as low as 11.4Vrms and 7.2Vrms respectively on a 95mum electrode a EWD device with a 20mum SU8 gasket. The stacked insulators in the actuator consisted of 135nm tantalum pentoxide (Ta2O5) and 180nm parylene C films deposited and coated with 70 nm of CYTOP. The physical scaling of electrodes was further demonstrated for 33mum and 21mum electrode devices, resulting in droplets of 12pl and 5pl respectively in conjunction with 3mum gaskets. Manipulation of magnetic beads during dispensing, droplet splitting and merging, and droplet transport were also demonstrated on the scaled EWD devices. The chemiluminescent light produced by the on-chip reaction of 100pl ATP-luciferin and luciferase could be detected with an external cooled CCD camera, but detecting this reaction with smaller-scale droplet reactions was limited by the external detector's sensitivity. Based on fundamental theories and experiments, the actuation voltage and dimensional scaling of EWD devices have been demonstrated, but the use of picoliter droplets in biochemical applications will required improved sensing methods.
机译:近年来,以电介质上电润湿(EWD)技术实现的数字微流控技术已广泛用作使芯片上的生物医学或生化实验室小型化的平台。 DNA焦磷酸测序是DNA合成测序方法之一,已成功整合到EWD设备上。但是,该平台需要微升的试剂和200〜300V的施加电压,这会导致更高的成本并限制了便携式系统的可行性。本文提出了一种采用多层绝缘体的低压EWD器件,该器件可以操纵芯片上的微微升液滴。在具有20μmSU8垫圈的EWD装置的95μm电极上分配300pl液滴,并分别在低至11.4Vrms和7.2Vrms的电压下启动。执行器中的堆叠绝缘体由135nm五氧化二钽(Ta2O5)和180nm聚对二甲苯C膜组成,并沉积并涂覆有70 nm CYTOP。进一步证明了33mum和21mum电极设备的电极物理比例,并结合3mum垫圈分别产生了12pl和5pl的液滴。在规模化的EWD设备上还展示了在分配,液滴分裂和合并以及液滴运输过程中操纵磁珠的过程。可以通过外部冷却的CCD摄像机检测由100pl ATP荧光素和荧光素酶的片上反应产生的化学发光光,但是以较小的液滴反应检测该反应受到外部检测器灵敏度的限制。基于基础理论和实验,已经证明了EWD设备的驱动电压和尺寸缩放,但是在生化应用中使用微微升液滴将需要改进的传感方法。

著录项

  • 作者

    Lin, Yan-You.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Engineering Biomedical.;Engineering Mechanical.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 208 p.
  • 总页数 208
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:07

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