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Enzyme-Based Logic Gates and Networks with Output Signals Analyzed by Various Methods

机译:基于酶的逻辑门和具有各种方法分析的输出信号的网络

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The paper overviews various methods that are used for the analysis of output signals generated by enzyme-based logic systems. The considered methods include optical techniques (optical absorbance, fluorescence spectroscopy, surface plasmon resonance), electrochemical techniques (cyclic voltammetry, potentiometry, impedance spectroscopy, conductivity measurements, use of field effect transistor devices, pH measurements), and various mechanoelectronic methods (using atomic force microscope, quartz crystal microbalance). Although each of the methods is well known for various bioanalytical applications, their use in combination with the biomolecular logic systems is rather new and sometimes not trivial. Many of the discussed methods have been combined with the use of signal-responsive materials to transduce and amplify biomolecular signals generated by the logic operations. Interfacing of biocomputing logic systems with electronics and smart signal-responsive materials allows logic operations be extended to actuation functions; for example, stimulating molecular release and switchable features of bioelectronic devices, such as biofuel cells. The purpose of this review article is to emphasize the broad variability of the bioanalytical systems applied for signal transduction in biocomputing processes. All bioanalytical systems discussed in the article are exemplified with specific logic gates and multi-gate networks realized with enzyme-based biocatalytic cascades.
机译:纸张概述了用于分析基于酶的逻辑系统产生的输出信号的各种方法。所考虑的方法包括光学技术(光学吸光度,荧光光谱,表面等离子体共振),电化学技术(循环伏安法,电位,阻抗光谱,电导率测量,使用场效应晶体管器件,pH测量)和各种机械电子方法(使用原子力显微镜,石英晶体微稳压)。尽管各种生物分析应用众所周知,但它们与生物分子逻辑系统组合的使用是相当新的,有时候不差异。许多讨论的方法已经与使用信号响应材料进行转导和扩增由逻辑操作产生的生物分子信号的方法组合。用电子和智能信号响应材料的生物算法逻辑系统的接口允许逻辑操作扩展到致动功能;例如,刺激生物电子器件的分子释放和可切换特征,例如生物燃料电池。本综述文章的目的是强调生物分析系统的广泛变异,用于生物划分过程中的信号转导。本文中讨论的所有生物分析系统都是用特定逻辑栅极和用基于酶的生物催化级联实现的多栅网络。

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