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低温蜡键合法制备生物功能化微流控结构

Fabrication of biofunctionalized microfluidic structures by low-temperature wax bonding.

机构信息

Instituto de Microelectrónica de Barcelona, Spain.

出版信息

Anal Chem. 2012 Sep 18;84(18):7838-44. doi: 10.1021/ac301512f. Epub 2012 Aug 31.

Abstract

In this work, a new fabrication technology for microfluidics based on the use of wax is described. Microfluidic structures are assembled using wax as both a thermoplastic adhesive layer between two glass substrates and a spacer layer defining the microchannels. Wax patterns with dimensions down to 25 μm are easily produced on glass substrates using specially developed decal-transfer microlithography. A complete microfluidic system is created by bonding the wax patterned layer with an additional glass substrate. On the basis of the special melting behavior of waxes, an effective glass-wax bonding is achieved at 40 °C by applying a soft pressure and without the requirement of any glass pretreatment. Wax bonding provides an effective sealing of the fluidic networks even on nonflat glass substrates (i.e., containing metal electrodes). The mild conditions required for the bonding process enables the fabrication of lab-on-a-chip devices incorporating biomolecules, as is demonstrated with the implementation of a simple heterogeneous immunoassay in a microfluidic device with amperometric detection.

摘要

在这项工作中,描述了一种基于使用蜡的新型微流控制造技术。微流控结构使用蜡作为两层玻璃基板之间的热塑性粘合剂层和定义微通道的间隔层进行组装。使用专门开发的转印微光刻技术,很容易在玻璃基板上制作尺寸达到 25 μm 的蜡图案。通过将蜡图案化层与另外一个玻璃基板进行键合,可以创建完整的微流控系统。基于蜡的特殊熔化行为,通过施加软压力并且不需要任何玻璃预处理,在 40°C 时可以实现有效的玻璃-蜡键合。蜡键合即使在非平整玻璃基板(即含有金属电极的基板)上也能有效地密封流体网络。键合过程所需的温和条件允许制造包含生物分子的片上实验室设备,这通过在具有安培检测的微流控设备中实现简单的异质免疫分析来证明。

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