标题: 微晶片电泳-化学放光侦测之研究
Study of Chemiluminescence Detection in Microchip Capillary Electrophoresis
作者: 李佳仪
Jia-Yi Lee
谢有容
You-Zung Hsieh
应用化学系硕博士班
关键字: 化学放光侦测法;晶片电泳;chemiluminescence;microchip electrophoresis
公开日期: 2000
摘要: 近十年来,电泳及其相关技术于微晶片上的发展已达突飞猛进的境界,然而目前为止,由于玻璃及石英基材拥有为人熟悉的表面、电渗流及光学特性,使得多数晶片制造仍旧以这两种基材为主,对于分析物的侦测则多半使用雷射激发萤光侦测器,由于制程的繁琐及造价高昂的侦测系统,使微晶片分析系统价格一直居高不下。
本研究中,选择塑胶基材制造晶片结合化学放光侦测法以提高微晶片电泳应用性,并具有分析时间短、消耗样品量少、侦测系统简单及微小化等优点。研究中以线压法制程于PMMA基材上压制流道,压线条件为102℃加热8分钟,贴合条件为104℃加热8分钟。此方法制程之晶片具良好流通性,且良率可达70%。经由线压法制成之晶片,我们选择luminol-H2O2-HRP放光系统做为化学放光侦测法之测试系统,依序探讨电场强度、各反应试剂混合比例、侦测位置等条件,建立最适化学放光侦测系统。为迅速提供足够的光子产生放光反应,本分析系统选择luminol 10 mM、HRP 100 units/mL为最适放光条件,于系统最佳条件下,H2O2之线性范围为0.1 ~ 0.01%,理论侦测极限为0.001%。
Capillary electrophoresis and related techniques on microchips have made great strides in last decade. Typically, these chips were fabricated in glass or quartz because of their well-defined surfaces, good electroosmotic properties, and excellent optical properties for ultra sensitive detection. The analytes were commonly detected by laser-induced fluorescence (LIF). Due to the multi-fabrication process and the expensive detection system, the microelectrophoresis chip system is costly.
In this study, we used plastic chips combined chemiluminescence (CL) detection method to explore the application of microchip electrophoresis. The channels were fabricated on poly(methylmethacrylate) (PMMA) by wire imprinting method. The channel was constructed by heating the plastic at 102oC for 8 min. After forming the channel layout, the channel was sealed with another PMMA by heating the plastic at 104oC for 8 min. The luminol-H2O2-HRP system was employed for testing CL system. Several factors such as electric field strength, mixing mold of reagents, and detection point that affected the CL intensity were examined. At the optimized condition, the H2O2 linear range was 0.1% ~ 0.01% with theoretical detection limit at 0.001%.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT890500059
http://hdl.handle.net/11536/67680
显示于类别:Thesis