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Optimized plasma-assisted bi-layer photoresist fabrication protocol for high resolution microfabrication of thin-film metal electrodes on porous polymer membranes

机译:优化的等离子体辅助双层光致抗蚀剂制造方案用于在多孔聚合物膜上高分辨率地细微制造薄膜金属电极

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摘要

Structured metal thin-film electrodes are heavily used in electrochemical assays to detect a range of analytes including toxins, biomarkers, biological contaminants and cell cultures using amperometric, voltammetric and impedance-based (bio)sensing strategies as well as separation techniques such as dielectrophoresis. Over the last decade, thin-film electrodes have been fabricated onto various durable and flexible substrates including glass, silicon and polymers. However, the combination of thin-film technology with porous polymeric substrates frequently used for biochips often results in limited resolution and poor adhesion of the metal thin-film, thus severely restricting reproducible fabrication and reliable application in e.g. organ-on-a-chip systems. To overcome common problems associated with micro-structured electrode manufacturing on porous substrates, we have optimized a bi-layer lift-off method for the fabrication of thin-film electrodes on commercial porous polyester membranes using a combination of LOR3A with AZ5214E photoresists. To demonstrate practical application of our porous electrode membranes for trans-epithelial electrical resistance measurements a tetrapolar biosensing set-up was used to eliminate the artificial resistance of the porous polymer membrane from the electrochemical recordings. Furthermore, barrier resistance of Bewo trophoblast epithelial cells was compared to a standard Transwell assay readout using a EVOM2 volt-ohm meter.
机译:结构化的金属薄膜电极广泛用于电化学分析中,以使用安培,伏安和基于阻抗的(生物)传感策略以及分离技术(如介电泳)检测包括毒素,生物标志物,生物污染物和细胞培养物在内的各种分析物。在过去的十年中,薄膜电极已被制造到各种耐用且柔性的基板上,包括玻璃,硅和聚合物。然而,薄膜技术与经常用于生物芯片的多孔聚合物基底的结合通常导致有限的分辨率和金属薄膜的差的粘附性,因此严重地限制了可再现的制造和可靠的应用,例如。芯片上器官系统。为了克服与在多孔基板上制造微结构电极相关的常见问题,我们优化了双层剥离方法,以结合使用LOR3A和AZ5214E光致抗蚀剂在商用多孔聚酯膜上制造薄膜电极。为了证明我们的多孔电极膜在跨上皮电阻测量中的实际应用,采用四极生物传感装置从电化学记录中消除了多孔聚合物膜的人工电阻。此外,使用EVOM2伏特计将Bewo滋养层上皮细胞的屏障抵抗力与标准Transwell测定读数进行了比较。

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