蛋白质电子学:在人17-40和细菌视紫红质受体上的应用

E. Alfinito, L. Reggiani, R. Cataldo, G. D. Nunzio, M. Guascito, L. Giotta
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引用次数: 1

摘要

人类嗅觉17-40和细菌视紫红质是电子领域受到特别关注的两种蛋白质受体,因为它们有可能实现能够探测气味和光线的纳米生物装置,从而对医疗和绿色能源收集应用有用。综述了近年来有关这些受体电反应的一些实验。数据在一门新科学的框架内进行解释,该科学利用了生物学和生物医学工程中的复杂性,称为蛋白质电子学。特别是,单个蛋白质被建模为阻抗网络,其拓扑特性影响通过实验测量的电响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proteotronics: Application to Human 17-40 and Bacteriorhodopsin Receptors
Human olfactory 17-40 and Bacteriorhodopsin are two protein receptors that received particular attention in electronics, due to the possibility of implementing nano-biodevices able to detect odours and light and thus useful for medical and green energy harvesting applications. Some recent experiments concerning the electrical responses of these receptors are reviewed. Data are interpreted in the framework of a new science exploiting the complexity in biology and biomedical engineering called proteotronics. In particular, the single protein is modelled as an impedance network whose topological properties affect the electrical response as measured by experiments.
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