Wilk S J, Petrossian L, Goryll M, Thornton T J, Goodnick S M, Tang J M, Eisenberg R S
Arizona State University, Center for Solid State Electronics Research, Tempe, AZ 85287, USA.
Biosens Bioelectron. 2007 Sep 30;23(2):183-90. doi: 10.1016/j.bios.2007.03.030. Epub 2007 Apr 8.
We demonstrate the microfabrication of a low-noise silicon based device with integrated silver/silver chloride electrodes used for the measurement of single ion channel proteins. An aperture of 150 microm diameter was etched in a silicon substrate using a deep silicon reactive ion etcher and passivated with 30 nm of polytetrafluoroethylene via chemical vapor deposition. The average recorded noise in measurements of lipid bilayers was reduced by a factor of four through patterning of a 75 microm thick SU-8 layer around the aperture. Integrated electrodes were fabricated on both sides of the device and used for repeatable, stable, giga-seal bilayer formations as well as characteristic measurements of the transmembrane protein OmpF porin.
我们展示了一种用于测量单离子通道蛋白的、带有集成银/氯化银电极的低噪声硅基器件的微加工工艺。使用深硅反应离子刻蚀机在硅衬底上蚀刻出直径为150微米的孔,并通过化学气相沉积用30纳米的聚四氟乙烯进行钝化处理。通过在孔周围图案化75微米厚的SU-8层,脂质双层测量中记录的平均噪声降低了四倍。在器件的两侧制作了集成电极,用于可重复、稳定的千兆封接双层形成以及跨膜蛋白OmpF孔蛋白的特性测量。