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Microfluidic channels laser-cut in thin double-sided tapes: cost-effective biocompatible fluidics in minutes from design to final integration with optical biochips

机译:激光切割薄双面胶带中的微流体通道:从设计到与光学生物芯片的最终集成,几分钟之内即可实现具有成本效益的生物相容性流控技术

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摘要

A simple, reliable and cost-effective fluidic channel, fabricated by using double-sided pressure-sensitive tapes, is demonstrated here. A laser-cutting method is applied to engrave structures in sheets of the tapes. After peeling off the tape liners, the structures could be easily integrated at room temperature with label-free optical waveguide biochips without further modifications or additional processing steps. It is shown that the well-defined and controllable height of the channels is advantageous for stopped-flow measurements of analyte binding. The easy fabrication of a fully transparent integrated sensor unit – tape cuvette system is also demonstrated for parallel microscopic investigations. The transparent unit was used to on-line monitor the surface adhesion of Salmonella cells on poly-l-lysine-coated biochip surfaces, followed by the straightforward microscopic visualization of the adhered bacterial cells. The material of the double sided tape is stable in aqueous solutions. Furthermore, its material is biocompatible, making it ideal for biological applications. Excellent, stable and reversible bonding of the microstructured tapes to biocompatible plastic and glass is also demonstrated. The simplicity of the fabrication at ambient temperatures makes the developed processes appealing for lab-on-a-chip applications, particularly if the bonded biochips are precious.
机译:在此展示了使用双面压敏胶带制造的简单,可靠且经济高效的流体通道。将激光切割方法应用于在胶带的片材上雕刻结构。剥离胶带衬里后,无需进一步修改或附加处理步骤,即可轻松在室温下将结构与无标签的光波导生物芯片整合。结果表明,通道的高度明确且可控制的高度有利于分析物结合的停流测量。还展示了易于制造的完全透明的集成式传感器单元-试管系统,用于并行显微镜研究。透明单元用于在线监测沙门氏菌细胞在聚-1-赖氨酸包被的生物芯片表面上的表面粘附,然后对粘附的细菌细胞进行直观的显微镜观察。双面胶带的材料在水溶液中稳定。此外,它的材料具有生物相容性,非常适合生物应用。还展示了微结构化胶带与生物相容性塑料和玻璃的出色,稳定和可逆的粘合。在环境温度下制造的简单性使得开发的工艺吸引了芯片实验室的应用,尤其是在键合生物芯片非常珍贵的情况下。

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