2-dimensional protein crystals for bioelectronics

H. Sasabe, T. Furuno, A. Sato, K. Ulmer
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引用次数: 1

Abstract

A two-dimensional protein crystal that preserves biological function is necessary for the realization of bioelectronic devices. The authors have fabricated a close-packed purple membrane (PM) monolayer by the Langmuir-Blodgett technique and studied the proton transfer through the membrane under the photoexcitation. The PM monolayer is transferred to an indium-tin-oxide or Al-deposited glass substrated and/or a Si wafer by a horizontal transfer technique. The morphology of monolayer films was directly investigated by SEM. From the static and dynamic measurement of photovoltaic effect in the PM multilayer, it was confirmed that the photochemical cycle of the bacteriorhodopsin (membrane protein of PM) was preserved. The two-dimensional packing of globular protein ferritin was also investigated. Depending on the surface pressure applied, the packing changes in a chainlike aggregate or in a fairly good lattice (small patch).<>
用于生物电子学的二维蛋白质晶体
保留生物功能的二维蛋白质晶体是实现生物电子器件所必需的。采用Langmuir-Blodgett技术制备了一种致密的紫色膜(PM)单层,并研究了光激发下质子在膜上的转移。通过水平转移技术将PM单层转移到氧化铟锡或铝沉积玻璃基片和/或硅晶片上。用扫描电镜直接观察了单层膜的形貌。通过对PM多层膜中光伏效应的静态和动态测量,证实了细菌视紫红质(PM的膜蛋白)的光化学循环得到了保存。研究了球状铁蛋白的二维包装。根据施加的表面压力,填料会以链状聚集体或相当好的晶格(小块)的形式变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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