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Three-dimensional (3-D) microfluidic-channel-based DNA biosensor for ultra-sensitive electrochemical detection

机译:基于三维(3-D)微流体通道的DNA生物传感器用于超灵敏的电化学检测

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摘要

A three-dimensional (3-D) microfluidic-channel-based electrochemical DNA biosensor was constructed using anodic aluminum oxide (AAO) filtration membranes as the designing templates by taking advantage of their well-defined cylindrical fluidic channels. By electroless gold plating and through thio chemistry, single stranded DNA sequences with 19 base pairs specified to Bacteroides thetaiotaomicron were immobilized into the AAO fluidic channels to form a probe DNA electrode for electrochemical sensing. Cyclic voltammetry (CV) was used to measure the electrochemical response of the sensor using two different redox indicators, [Fe(CN)_6]~(4-) and/or [Ru(NH_3)_6]~(3-) before and after hybridization with the complementary target DNA sequences. The microfluidic-channel-based DNA biosensor showed detection sensitivity amplified to 10~(-19) M, which is one order of magnitude higher than attomolar (10~(-18) M) range. Such enhanced detection sensitivity is attributed to the well-defined fluidic channel structure that gives high surface area for probe DNA immobilization and enables target DNA solutions to pass through its fluidic channels for rapid and efficient hybridization.
机译:利用阳极氧化铝(AAO)过滤膜作为设计模板,利用其明确定义的圆柱状流体通道,构建了基于三维(3-D)微流体通道的电化学DNA生物传感器。通过化学镀金和硫代化学,将特定于拟杆菌(Theactotaomicron)的19个碱基对的单链DNA序列固定在AAO流体通道中,以形成用于电化学传感的探针DNA电极。循环伏安法(CV)用于在传感器之前和之后使用两种不同的氧化还原指示剂[Fe(CN)_6]〜(4-)和/或[Ru(NH_3)_6]〜(3-)来测量传感器的电化学响应。与互补靶DNA序列杂交后。基于微流体通道的DNA生物传感器显示检测灵敏度放大到10〜(-19)M,比阿托摩尔(10〜(-18)M)范围高一个数量级。这种增强的检测灵敏度归因于明确定义的流体通道结构,该结构为探针DNA固定提供了较大的表面积,并使目标DNA溶液能够通过其流体通道进行快速有效的杂交。

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