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首页> 外文期刊>Nanotechnology >Fundamental building blocks for molecular biowire based forward error-correcting biosensors
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Fundamental building blocks for molecular biowire based forward error-correcting biosensors

机译:基于分子生物线的前向纠错生物传感器的基本组成部分

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摘要

This paper describes the fabrication, characterization and modeling of fundamental logic gates that can be used for designing biosensors with embedded forward error-correction (FEC). The proposed logic gates (AND and OR) are constructed by patterning antibodies at different spatial locations along the substrate of a lateral flow immunosensor assay. The logic gates operate by converting binding events between an antigen and an antibody into a measurable electrical signal using polyaniline nanowires as the transducer. In this study, B. cereus and E. coli have been chosen as model pathogens. The functionality of the AND and OR logic gates has been validated using conductance measurements with different pathogen concentrations. Experimental results show that the change in conductance across the gates can be modeled as a log-linear response with respect to varying pathogen concentration. Equivalent circuits models for AND and OR logic gates have been derived based on measured results.
机译:本文介绍了可用于设计具有嵌入式前向纠错(FEC)的生物传感器的基本逻辑门的制造,表征和建模。拟议的逻辑门(AND和OR)是通过在横向流免疫传感器测定的底物上不同空间位置处构图抗体的方式构建的。逻辑门通过使用聚苯胺纳米线作为换能器将抗原和抗体之间的结合事件转换为可测量的电信号来进行操作。在这项研究中,蜡状芽孢杆菌和大肠杆菌已被选为模型病原体。已使用具有不同病原体浓度的电导测量值验证了AND和OR逻辑门的功能。实验结果表明,跨门的电导率变化可以建模为针对变化的病原体浓度的对数线性响应。已根据测量结果推导了AND和OR逻辑门的等效电路模型。

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