Chung Kwang Hyo, Hong Jung Woo, Lee Dae-Sik, Yoon Hyun C
Biosensor Team, ETRI, Daejeon 305-350, Republic of Korea.
Anal Chim Acta. 2007 Feb 28;585(1):1-10. doi: 10.1016/j.aca.2006.12.012. Epub 2006 Dec 13.
A polymer microfluidic chip accomplishing automated sample flow and replacement without external controls and an application of the chip for bioanalytical reaction were described. All the fluidic operations in the chip were achieved by only natural capillary flow in a time-planned sequence. For the control of the capillary flow, the geometry of the channels and chambers in the chip was designed based on theoretical considerations and numerical simulations. The microfluidic chip was made by using polymer replication techniques, which were suitable for fast and cheap fabrication. The test for a biochemical analysis, employing an enzyme (HRP)-catalyzed precipitation reaction, exhibited a good performance using the developed chip. The presented microfluidic method would be applicable to biochemical lab-on-a-chips with integrated fluid replacement steps, such as affinity elution and solution exchange during biosensor signaling.
描述了一种无需外部控制即可实现自动样品流动和更换的聚合物微流控芯片及其在生物分析反应中的应用。芯片内的所有流体操作仅通过自然毛细管流按预定时间顺序完成。为了控制毛细管流,基于理论考虑和数值模拟设计了芯片内通道和腔室的几何形状。该微流控芯片采用聚合物复制技术制作,适合快速且低成本制造。利用所开发的芯片进行的采用酶(辣根过氧化物酶)催化沉淀反应的生化分析测试表现良好。所提出的微流控方法将适用于具有集成流体更换步骤的生化芯片实验室,如生物传感器信号传导过程中的亲和洗脱和溶液交换。