Biomedical Diagnostics Institute, National Centre for Sensor Research, Dublin City University, Glasnevin, Dublin 9, Ireland.
Lab Chip. 2010 Jun 7;10(11):1468-71. doi: 10.1039/b925132d. Epub 2010 Mar 10.
To harness the properties of both PDMS and silica, we have demonstrated hybrid integrated PDMS microfluidic systems with fused silica capillaries. The hybrid integrated PDMS microfluidics and silica capillary (iPSC) modules exhibit a novel architecture and method for leakage free CE sample injection merely requiring a single high voltage source and one pair of electrodes. The use of the iPSC device is based on a modular approach which allows the capillary to be reused extensively whilst replacing the attached fluidic module for different experiments. Integrating fused silica capillaries with PDMS microfluidic modules allows the direct application of a wide variety of well established conventional CE protocols for separations of complex analytes. Furthermore it bears the potential for facile coupling to standard electro-spray ionization mass spectrometry (ESI-MS), letting users focus on the sample analysis rather than the development of new separation protocols. The fabrication of the iPSC module consists of a simple and quick three-step method that submerges a fused silica capillary in PDMS prepolymer. After cross linking the prepolymer and punching the inlets, the iPSC module layer can be mounted onto a microfluidic device for CE separation.
为了利用 PDMS 和二氧化硅的特性,我们展示了具有熔融石英毛细管的混合集成 PDMS 微流控系统。混合集成 PDMS 微流控和二氧化硅毛细管(iPSC)模块采用了一种新颖的架构和方法,可实现无泄漏的 CE 样品进样,仅需单个高压源和一对电极。iPSC 器件的使用基于模块化方法,允许毛细管在不同实验中重复使用,同时更换连接的流体模块。将熔融石英毛细管与 PDMS 微流控模块集成,可直接应用各种成熟的常规 CE 协议,用于分离复杂的分析物。此外,它还有望与标准电喷雾电离质谱(ESI-MS)进行简单耦合,使用户能够专注于样品分析,而不是开发新的分离协议。iPSC 模块的制造包括一种简单快捷的三步法,即将熔融石英毛细管浸入 PDMS 预聚物中。预聚物交联并冲压入口后,iPSC 模块层即可安装到微流控装置上进行 CE 分离。