首页> 外文学位 >Microfabricated components for an integrated microfluidic electroanalysis system.
【24h】

Microfabricated components for an integrated microfluidic electroanalysis system.

机译:用于集成微流电分析系统的微制造组件。

获取原文
获取原文并翻译 | 示例

摘要

Genetics tests and assays have enormous scope of applications in biotechnology and medicine. Implementation of these series of monotonous biochemical reaction steps in microfluidic devices has lead to benefits in time, flexibility of operation, and cost of the reagents and systems. The main objective of this thesis is the development of components and related technologies for the realization of an integrated microfluidic system for these assays. Some of the critical technologies required are: (a) a detector to convey information from the molecular level to user level, (b) microvalves for control and isolation of reagents in the microchip and (c) micropumps for the transport of nanovolumes of the reagents across the chip.; All the three critical areas have been analyzed and developed. An inline electrochemical detector, capable of detecting 14.5 amol of electroactive Ferrocene carboxylic acid (FeAc), has been developed. It uses a novel electrochemical cell and supporting electronics design to eliminate the problem of gas evolution. FeAc was also tagged to calf thymus DNA sample and the DNA detected.; A novel electrokinetic pumping mechanism has also been developed, which uses scaling in microsystems to eliminate pressure flow and allow electrokinetic flow, also eliminating gas evolution normally associated with electrokinetic pumping by using the non-linearities in the system. Pumping velocities of 10 μm/s have been achieved.; An inline microvalve using Paraffin as the microactuation material has been developed. Burst pressures of 23 psig have been demonstrated. The valve is found to fully close at power as low as 35 mW.; While the devices presented here are stand-alone devices, the direction of research has been highly influenced by the goal of incorporating these devices into a complete genetic analysis system. Hence the fabrication techniques used are all low temperature processes; the materials are compatible, plastic-based, and the devices easily integrable.
机译:遗传学测试和分析在生物技术和医学中具有广泛的应用范围。在微流体装置中实施这些系列的单调生化反应步骤已导致时间,操作灵活性以及试剂和系统的成本的益处。本文的主要目的是开发用于实现这些测定的集成微流体系统的组件和相关技术。所需的一些关键技术是:(a)一种检测器,用于将信息从分子水平传递到用户水平;(b)用于控制和分离微芯片中试剂的微型阀;以及(c)用于运输纳米级试剂的微型泵整个芯片。这三个关键领域均已分析和开发。已开发出一种能够检测14.5摩尔摩尔电活性二茂铁羧酸(FeAc)的在线电化学检测器。它使用新颖的电化学电池和辅助电子设计来消除气体逸出的问题。 FeAc也标记在小牛胸腺DNA样品上,并检测到DNA。还已经开发了一种新颖的电动泵送机构,其在微系统中使用缩放以消除压力流并允许电动泵流,并且还通过使用系统中的非线性来消除通常与电动泵送有关的气体逸出。抽速已达到10μm/ s。已经开发了使用石蜡作为微驱动材料的在线微阀。爆裂压力为23 psig。发现该阀在功率低至35 mW时完全关闭。虽然此处介绍的设备是独立设备,但将这些设备整合到完整的遗传分析系统中的目标极大地影响了研究方向。因此,所使用的制造技术都是低温工艺。这些材料是兼容的,基于塑料的,并且这些设备易于集成。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号