Liu Bingwen, Rieck Daniel, Van Wie Bernard J, Cheng Gary J, Moffett David F, Kidwell David A
School of Chemical Engineering and Bioengineering, Washington State University, Pullman, WA 99164-2710, USA.
Biosens Bioelectron. 2009 Mar 15;24(7):1843-9. doi: 10.1016/j.bios.2008.09.019. Epub 2008 Oct 1.
This paper presents a novel method for making micron-sized apertures with tapered sidewalls and nano-sized apertures. Their use in bilayer lipid membrane-based ion selective electrode design is demonstrated and compared to mesoscale bilayers and traditional PVC ion selective electrodes. Micron-sized apertures are fabricated in SU-8 photoresist films and vary in diameter from 10 to 40 microm. The tapered edges in SU-8 films are desired to enhance bilayer lipid membrane (BLM) formation and are fabricated by UV-light overexposure. Nano-apertures are made in boron diffused silicon film. The membranes are used as septa to separate two potassium chloride solutions of different concentrations. Lecithin BLMs are assembled on the apertures by ejecting lipid solution. Potassium ionophore, dibenzo-18-crown-6, is incorporated into BLMs by dissolving it in the lipid solution before membrane assembly. Voltage changes with increasing potassium ion concentrations are recorded with an A/D converter. Various ionophore concentrations in BLMs are investigated. At least a 1% concentration is needed for consistent slopes. Electrode response curves are linear over the 10(-6) to 0.1M range with a sub-Nernstian slope of 20mV per Log concentration change. This system shows high selectivity to potassium ions over potential interfering sodium ions. BLMs on the three different aperture sizes at the meso-, micro-, and nano-scales all show similar linear ranges and limits of detection (LODs) as PVC ion selective membranes.
本文提出了一种制造具有锥形侧壁的微米级孔径和纳米级孔径的新方法。展示了它们在基于双层脂质膜的离子选择性电极设计中的应用,并与中尺度双层膜和传统聚氯乙烯离子选择性电极进行了比较。在SU-8光刻胶膜中制造微米级孔径,直径范围为10至40微米。SU-8膜中的锥形边缘有助于增强双层脂质膜(BLM)的形成,通过紫外线过度曝光来制造。纳米孔径是在硼扩散硅膜中制成的。这些膜用作隔膜,以分离两种不同浓度的氯化钾溶液。通过喷射脂质溶液在孔径上组装卵磷脂BLM。在膜组装前,将钾离子载体二苯并-18-冠-6溶解在脂质溶液中并掺入BLM中。用A/D转换器记录随着钾离子浓度增加的电压变化。研究了BLM中各种离子载体浓度。为了获得一致的斜率,至少需要1%的浓度。电极响应曲线在10(-6)至0.1M范围内呈线性,每对数浓度变化的亚能斯特斜率为20mV。该系统对钾离子具有高选择性,优于潜在干扰性钠离子。中尺度、微米级和纳米级三种不同孔径尺寸上的BLM与聚氯乙烯离子选择性膜均显示出相似的线性范围和检测限(LOD)。