标题: | 电动力操控应用于微液滴细胞晶片之研究 Electrokinetic Manpulations of Microdroplet-Based Cell Chips |
作者: | 王祖德 Tsu-Te Wang 范士冈 Shih-Kang Fan 材料科学与工程学系奈米科技硕博士班 |
关键字: | 电动力操控;实验室晶片;电湿润;介电泳;细胞晶片;electrokinetic manipulation;Lab-on-a-Chip;electroweting;dielectrophoresis;cell chip |
公开日期: | 2004 |
摘要: | 电动力是一跨尺度的操作力量,本研究将之应用于实验室晶片,成功地将电动力同时操控数位微流体及生物微粒子。其中数位微流体系统是一种以非连续之微液滴作为液体传输单位的微流体系统,其主要优点包含不需流道设计与制程简单等等。而介电泳是细胞实验室晶片领域中操控生物微粒子之非常重要的技术,利用微电极所产生的不均匀电场可对细胞等生物分子进行分离、浓缩、定位等操控技术。本研究以整合介电泳技术于数位微流体系统为目标。 本研究以电湿润技术发展数位微流体系统,进行微液滴传送之测试,配合电讯号、元件材料、及液滴操作环境的改变,讨论微液滴传送之机制及生物应用。此外,发现了非对称电湿润现象,探讨其理论基础并发展为液滴传输系统。同时也发展介电泳操控技术,结合微电极设计及理论模拟计算,了解介电泳的理论及应用。最后,整合电湿润数位微流体系统及介电泳细胞操控技术于同一晶片,成功地设计并制作不含机械结构且以电动力操控之微液滴细胞浓缩晶片。 Electrokinetic force is a cross-scale manipulation mechanism. In this research, we applied the electrokinetic force in Lab-on-a-Chip and demonstrated its cross-scale manipulation abilities by driving microdroplets and bio-objects. Microdroplets are the basic units in a digital microfluidic system. In such a system, microdroplets are transported individually in channel-less structure, which simplifies the fabrication processes. Dielectrophoresis (DEP) force had been demonstrated in separating, concentrating, locating, and orientating bio-objects by non-uniform electric fields generated by energized microelectrodes. The goal of this research is to integrate the DEP technique into the digital microfluidic system. In this research, electrowetting-on-dielectric (EWOD) phenomenon was adopted as the actuation force of microdroplets. We examined the transportation of microdroplets by varying electrical signals, device materials, and filling media. Asymmetric EWOD (AEWOD) phenomenon was observed and applied in an unidirectional microdroplet pumping device. Besides EWOD-based microdroplets actuation, the simulation of DEP field and DEP manipulation of mammalian cells were also investigated under different microelectrode designs. Finally, we successfully developed a microdroplet-based cell chip as a cell concentrator by integration of EWOD and DEP technologies. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009252502 http://hdl.handle.net/11536/77500 |
显示于类别: | Thesis |