Urisu Tsuneo, Rahman Md Mashiur, Uno Hidetaka, Tero Ryugo, Nonogaki Yoichi
Department of Vacuum UV Photoscience, Institute for Molecular Science, The Graduate University for Advanced Studies, Myodaiji, Okazaki, Japan.
Nanomedicine. 2005 Dec;1(4):317-22. doi: 10.1016/j.nano.2005.10.002.
We have developed two basic technologies for fabrication of supported planar lipid bilayer membrane ion channel biosensors: a defect-free lipid bilayer formation on the substrate surface with electrode pores and a patterning technique for the hydrophobic self-assembled-monolayer to form the guard ring that reduces the lipid bilayer edge-leak current. The importance of the supported-membrane structure to achieve low noise and high-speed performance is suggested on the basis of the observed relation between the single-ion-channel current noise and the pore size.
一种是在带有电极孔的基底表面形成无缺陷的脂质双层,另一种是用于疏水性自组装单分子层的图案化技术,以形成减少脂质双层边缘泄漏电流的保护环。基于观察到的单离子通道电流噪声与孔径之间的关系,表明了支撑膜结构对于实现低噪声和高速性能的重要性。